Wednesday, January 21, 2026
Quantum matter and quantum engines.
Thursday, October 16, 2025
New robots are more independent than before.
Computers are robots’ brains.
NVIDIA published the world's smallest supercomputer. The size of that new supercomputer is impressive. The system’s size is 150mm, 150mm, and 50,5mm. The power of this system is 1 PFLOP, and the system price is $3999. That means the system can fit on the table. The size of that supercomputer is so small that people thought it was some kind of router. These kinds of supercomputers allow. The operator to run. The AI and complicated software without networks. And that kind of small computer. It can make the new types of intelligent robots more effective than they were before. This kind of computer can give a drone a new way to avoid defense.
These kinds of systems can control space shuttles, robots, and many other things. Like civil and military drones. This kind of system can also make it possible. To create independently operating robots that can travel to the edge of the solar system. The human-shaped robots. Those that are developed in China.
https://nvidianews.nvidia.com/news/nvidia-dgx-spark-arrives-for-worlds-ai-developersAnd maybe in other countries. Can have real-looking faces. That makes them mimic humans. Those robots can operate in independent missions. Or they can act as surveillance tools. That can observe people. Like the army staff. And police members. But robots can make many things differently. Than humans. The robot can learn new things like humans. The difference is that the control software determines what the robot can do. The artificial muscles and skin that cover the metal skeleton can be very strong. And in the skeleton can also be. Servomotors between artificial bones.
Those bones can be made of steel, chromium, titanium, or carbon fiber. The artificial skin covers the entirety. These kinds of robots can perform. Many types of official duties. Those robots can operate in high-risk undercover operations. Robots will not change their side. They follow their code without excuses.
There is also a possibility that robots have a so-called ghost protocol. This means that the robot can act as a cleaner or in any other role. When the robot sees the person wanted by authorities. The image recognition activates the law enforcement role. The program determines. The purpose of the robot. One change in the program, the cleaner robot turns into a combat robot. The human-shaped robots can also operate as assassins. There is a possibility. That the democracy movement members get their identical robot twins. Then those AI-controlled robots make contact with those people’s friends. And then those robots arrest or assassinate those people. The problem with robots is that they always follow their orders.
https://interestingengineering.com/innovation/china-aheadform-humanoid-robot-expression
https://nvidianews.nvidia.com/news/nvidia-dgx-spark-arrives-for-worlds-ai-developers
https://interestingengineering.com/innovation/china-aheadform-humanoid-robot-expression
https://www.rudebaguette.com/en/2025/10/i-swear-it-looked-alive-unitrees-g1-robot-performs-kung-fu-and-backflips-with-human-like-precision-and-its-just-getting-started/
https://www.rudebaguette.com/en/2025/10/i-thought-it-was-a-router-nvidias-dgx-spark-packs-a-supercomputer-into-a-tiny-box-that-runs-1000-trillion-ops-per-second/
Sunday, September 14, 2025
Solar-powered drones and hypersonic technology are ultimate tools.
Solar-powered drones and hypersonic technology are ultimate tools.
New solar-powered drones can be far more effective than anyone expected.
In some scenarios, solar-powered drones can be utilized for intelligence, surveillance, reconnaissance, and targeting purposes. Solar-powered drones can fly far higher than regular, jet-engined drones. If a solar-powered drone is made using stealth materials and uses low-visibility technology. Those systems can fly far above target areas, record radar signals, and observe communication tasks. And other things. Using different types of optical and radar scanners. The drone itself leaves a minimum IR and radar signature, and that system can transmit information about the battlefield to headquarters.
Controllers can use laser data communication with those systems. The high-flying drone, or pseudo-satellite. Can make a similar mission. With satellites. And the difference is their flexibility. The large-sized drone can also transport rockets and missiles, and it can operate as a flying launching platform for satellite carriers as well as large missiles.
The high-flying drones can see things. Like hypersonic missile launches, it can give early warning signals to the HQ. The hypersonic missile is one of the most critical things in modern warfare. If the large-sized Intercontinental ballistic missile, ICBM, launches the hypersonic missile. The flight trajectory would be a high-parabolic.
A winged V-2 /A-4b) rocket is the atmospheric missile’s stem form. The wing’s idea was to give that primitive missile the external range. That missile had the purpose to bomb New York, but its test flights began in spring 1945. Some of them could fly in White Sands, USA, after WWII.
The missile transports the hypersonic system to a high trajectory, and then the hypersonic missile dives back to the atmosphere and launches its ramjet or scramjet engine. The trajectory makes the hypersonic missile launch quite hard to detect. The launch may seem like a rocket failure. That means hypersonic missiles are tools that are hard for defense. That’s why those early warning and defense systems require updating.
There is a possibility that giant ICBM missiles like “Sarmats” can transport those hypersonic missiles to their targets. The system can be based on the technology used in “Brahmos” missiles. The hypersonic missile can replace the upper stage, or stages, in an ICBM. Another version of the hypersonic missiles is the so-called atmospheric missiles. The atmospheric missile is a hypersonic missile. That uses a regular rocket engine to give speed. The missile can have wings and a steering wing. This changes the symmetry in the rocket engine’s exhaust gas. Which turns the missile. The atmospheric missile can have a selectable flight profile. That system can fly like a normal missile. But it can have an atmospheric flight profile.
http://www.astronautix.com/a/a-4b.html
https://interestingengineering.com/military/drone-boeing-747-sized-wingspan-flies
https://interestingengineering.com/photo-story/us-military-validates-all-electric-drone
https://en.wikipedia.org/wiki/AeroVironment_Helios_Prototype
Friday, September 12, 2025
New self-assembly nanotubes turn the impossible possible.
New self-assembly nanotubes turn the impossible possible.
The Moiré pattern allows nanotubes to undergo a self-assembly process. Self-assembling nanostructures are a fundamental thing in nanoscale systems. That makes it possible to create extremely long nanotubes. Those nanotubes can be the fundamental materials in lightweight and strong structures, from extremely tall buildings to very strong aviation materials.
Nanoscale technology means that. The structure is planned and created at the atomic level. The nanoscale structures are like LEGOs, and they can form larger structures. Nanotube technology makes it possible. To create lightweight and strong structures. In nanotube-based nanostructures, the nanotube bundle is bound together using a graphene layer. That makes the structure strong and lightweight. Those nanotube structures make it possible to create very tall buildings.
The nanotube structure that graphene binds together.
Artist’s impression of a space elevator
"A space elevator is conceived as a cable fixed to the equator and reaching into space. A counterweight at the upper end keeps the center of mass well above geostationary orbit level. This produces enough upward centrifugal force from Earth's rotation to fully counter the downward gravity, keeping the cable upright and taut. Climbers carry cargo up and down the cable." (Wikipedia, Space elevator)
Artist’s impression of Ceres space elevator.( Wikipedia commons)
The space sling is one of the versions of the centrifugal launch systems. Or spin launchers. The idea is similar to space elevators. That benefits Earth's rotation. For transport satellites to the orbiter or even to the solar system. The idea is that the probe is connected to a satellite using a very long cable. On the other side is the counterbalance. When the system launches a satellite, the space sling slings that cable. Where the probe is connected like a sling. When the satellite is separated, the system must also separate the counterbalance that is on the other cable. Or it must roll that cable inside.
When we think about mega-projects like space elevators, we always think about the mast-shaped structure. That some kind of asteroid keeps up. By benefiting from the centripetal force. The structure can also involve a pressure statue. If the system allows the airflow inside that tower. The air pressure pushes it up. And pressure keeps it in its form.
Another way to make that tower is to use the same technology. Used in the Burj Khalifa tower in Dubai. The building requires a large area base, which could be hundreds of kilometers. If the building’s area is large enough, it can be so high that it can reach even the edge of space. The building could be the mega-pyramid that has ever been seen before.
And anyway, if we think about a kilometer-high launch tower, the rocket will launch through the low-pressure channel, which can save fuel. The rocket will be put in a launch position in the launch tube. Then the hatch at the top of the channel will open. And low pressure pulls the rocket through that channel. But those things are future visions. About systems that can revolutionize space technology.
https://scitechdaily.com/moire-than-meets-the-eye-carbon-nanotubes-self-assemble-into-complex-structures-for-materials-research/
https://en.wikipedia.org/wiki/Space_elevator
Thursday, September 11, 2025
Futuristic journey to the Proxima Centauri system.
Futuristic journey to the Proxima Centauri system.
A hypothetical journey to Alpha Centauri, or actually to Proxima Centauri, will be the thing that changes our view of the universe and ourselves. The film introduces three types of spacecraft. The Millennium ship, the cryostatic ship, and the WARP ship. The WARP ship is not yet possible. In some models, the unmanned, small-sized WARP probes use miniature black holes as a power source and for quantum communication. Those systems travel first to other solar systems to search for a possible habitable planet.
The next step is the cryostatic crew. That travels to the targeted solar system as a vanguard. Whose mission is to prepare the base for the main group of colonists who travel to that solar system in the generation ships. Those generation ships are the giant metal cathedrals that can reach a speed. Of about 2-5% of the speed of light. The WARP system is the only thing. That can take the crew back from the Alpha Centauri system while their sender is alive. The journey to Alpha Centauri takes hundreds of years.
The biggest problem with the journey to Alpha Centauri is that when we send crew to that mission, they cannot return. That means those people are gone forever. The cryoship reaches 20-50% of the speed of light. That speed is very slow in the universe, and that means, even if we make a cryoship, we would send those people on the mission. where we don’t meet those people again. The cryostatic system denies aging, and those people can return from their mission, but the Earth has changed while they were on their journey. And there is no one left from the team that sent those operators on their journey.
AI-made inspiration details about the hypothetical Proxima B base. That base looks like the Moonbase. Its mission would be to protect the crew against the Proxima superflares, extreme weather, and possible. micro-organisms. Because there is always an epidemiological risk. Those structures must be separated. The bubble protects the crew against superflares. The base could be underground, and that thing could be the airlock and observation station.
The generation ship will be the thing that transports the main groups of colonists. That craft needs generations to travel to Alpha Centauri. Those colonists who arrive at the Alpha Centauri system will never see Earth. That means Earth is a distant thing to those colonists. When we think about a situation where the generation ship is an artificial world. That slowly travels between solar systems; there is a big difference between that artificial world and a real planet. The environment in the artificial world is fully controlled. There are very carefully controlled microbes and temperatures on board the generation ship. Those systems are urgent because their mission is to deny. The artificial ecosystem's collapse.
When colonists land on Proxima Centauri B or some other planet in that planetary system. There are artificial wombs and advanced nanotechnology that allow the creation of artificial DNA. And those systems create artificial people who could operate at the surface of Proxima Centauri B or other planets in that solar system.
There is the natural environment. Winds, rain, and sunlight. There can also be natural microbes on that strange world. When that crew lands on that planet, they must live in the bubble. The base is isolated from the environment. The base’s mission is to protect those colonists against the Proxima super flares, storms, and the heat or extreme low temperature on that locked planet. Those colonists require protective suits if they travel on that planet. Because superflares raise the temperature very fast. The base can be in underground tunnels. That protects the colonists better. The Proxima would always be in the same position, because the planet is locked.
Wednesday, September 10, 2025
The Beyraktar drone makes its comeback.
The Beyraktar drone makes its comeback.
Above: “ A Ukrainian TB2 drone armed with precision-guided weapons.” (Eurasian Times)
At the beginning of the Ukrainian war, the Beyraktar drone was the key element in the defense. Then, Russian electronic warfare systems made that drone unable to operate, but the Beyraktar TB-2 may be back in business. The question is this: Are those Beyraktars the same that operated during the early Russian attack? There is a possibility that those drones are updated. The Beyraktar-type drones are large, and they can carry sub-drones or independent, AI-controlled kamikaze drones.
Or those Beyraktars can have an improved ability to cooperate with drone swarms and track missile sites. And especially sites that operate fiber drones. Or maybe their mission is to search Russian ECM stations and destroy them. Those drones can also operate. In maritime patrol duties. Recently, a Beyraktar drone sank a vessel in Black Sea.
There is a possibility that those large-sized drones can also operate as decoys or larger kamikaze drones. The purpose of those drones is to make the Russians attack it. The larger-sized drones can carry larger. And more powerful computers than small-sized drones. When we think about Beyraktars, there is a possibility that there are also jet-powered versions of that drone. Another possibility is that the larger drone will carry Beyraktar to a strike distance from the target. The Beyraktar is a system that can carry an AI-based image recognition and attack system.
The carrier vehicle can carry that drone deep into the Russian airspace. The AI-based system. Makes it possible to select. And attack targets independently. Those drones will not need radio communication. Or GPS. They can use optical digital scene-matching area correlation. Those are terrain contour-matching systems, boosted with aided inertial navigation systems, TERCOM/TAINS, which make those systems independent. from the GPS. The system uses the landmarks and inertial to navigate to the target.
A radioisotope thermoelectric generator, RTG, gives unlimited operational time for drones.
And then the system can drop parasite drones near the target, and Beyraktar can make a kamikaze mission against those targets. These kinds of systems are possible. The reason why. There are so many “maybes” in this text. Is this. There must be some kind of reason. Why Ukrainians return to that old system for operational use. There is a possibility that this kind of drone also has unlimited operational capacity.
Those drones can use electric engines and a radioisotope thermoelectric generator, RTG. The RTG gives electricity to the systems. And those systems can operate for a very long time. The Voyager space probe uses the RTG generator. Which has delivered electricity for almost 50 years. That means a propeller or blower using a drone can operate for almost unlimited time. The blower gives a higher speed for the drone. And that kind of stealth drone can be almost invisible. Those drones. Will not leave infrared marking, and their small size helps them survive.
https://www.eurasiantimes.com/bayraktar-tb2-drone-made-a-comeback-in-ukraine/
https://en.wikipedia.org/wiki/FP-5_Flamingo
https://en.wikipedia.org/wiki/Radioisotope_thermoelectric_generator
https://en.wikipedia.org/wiki/TERCOM
Friday, August 22, 2025
Chrysalis-spacecraft could someday travel on a one-way trip to Alpha Centauri.
Chrysalis-spacecraft could someday travel on a one-way trip to Alpha Centauri.
"Chrysalis could house several generations until it enters Alpha Centauri, where it could shuttle people to the surface of the planet Proxima Centuri b. (Image credit: Giacomo Infelise, Veronica Magli, Guido Sbrogio', Nevenka Martinello and Federica Chiara Serpe)" (ScitechDaily, Proposed spacecraft could carry up to 2,400 people on a one-way trip to the nearest star system, Alpha Centauri)
A spacecraft approximately 60 kilometers long, called “Chrysalis,” is a model of the generation ship that can transport human colonists to Alpha Centauri. The spacecraft is the winner of the competition to create a spacecraft that uses science-based technology and travels to Alpha Centauri. The spacecraft cannot use things. Like hyperdrive or WARP drive. The “Chrysalis” could take 1000-3000 space colonists on a one-way trip to Alpha Centauri. In that craft, generations will change before those colonists reach the Alpha Centauri system.
If we think that somebody sends this type of spacecraft to us, and it arrives tomorrow, that hypothetical spacecraft would be sent during the 30 Years' War that was going on in Europe. The thing is that we would never meet those colonists after we sent them on that journey. The messages will travel between Alpha Centauri and Earth in four years. So the message travels between these two solar systems in 8 years.
And then we must remember that when those people travel between stars, they become distant to us. In the same way, Earth will turn distant things into those colonists, or their descendants. When “Chrysalis” traveled hundreds of years, those colonists' descendants ever saw Earth. They might read about Earth from their databases. But they will never see Earth. And that’s why generation ship crews must not have any contact with the Earth because that eliminates the longing that causes psychological trauma and endangers the mission. So those crew members who will leave on that journey could be artificial, genetically engineered humans who have no parents.
Those people might grow in the bases at Triton or Pluto, and they might never see Earth. The thing is that the “Chrysalis” project requires many things. And one of them is that our culture must change that way. That we could accept that mission. And those interstellar missions require complete preparation. There must be bases where those crew members can be born and grow. And the biggest thing. That we must remember is this. When that spacecraft leaves our solar system, we never get its crew back. There is a big difference between cases where some crew can die to cases where those people will not come back.
The Tipler cylinder, or the Tipler time machine, can make it possible to travel to Alpha Centauri during a human lifetime. But we will not get that crew back. Time dilation in a spacecraft extends the crew's lifetime compared to the outside world.
Theoretically, the Tipler cylinder is quite easy to make. The system can use a similar principle to that of an induction electric engine use. The cylinder is in the tube, and the magnetic field causes that cylinder to spin very fast. The fact is that. The Tipler cylinder can also be the ion whirl that spins between two layers. But if the system uses physical cylinders. It must do something to the centripetal force that rips the cylinder into pieces.
The answer to the centripetal force problem can be high-power magnets. In the middle of the cylinder that pulls the cylinder into its form. Another thing that can create negative energy is a low-energy particle beam. That binds energy into it. That system acts like a quantum thermal pump, and it can also be connected to the high-power magnet that is in the middle of the Tipler cylinder.
The “Chrysalis” can transport people to Alpha Centauri if it can slow its time. That thing can happen by putting the spacecraft’s shell into spin very fast. That turns the spacecraft into the Tipler cylinder. The idea is that the cre module hovers freely in the fast-spinning tube. That spin can cause time dilation in that tube. The cylinder can have two layers that spin extremely fast.
Between those layers would be the ion layer that the system drives very fast in the cylinder’s rotational direction. The center module can hover in that cylinder or spin in the opposite direction with the same speed as the outer layer spins. The system can keep that tube in its form, pulling it to the middle of the structure using. The high-power magnets and low-energy Bose-Einstein condensate beams. That forms the situation where energy travels into the middle of the cylinder. The cylinder causes time dilation, and that increases the crew's lifetime. But anyway, those crews will never return.
https://www.livescience.com/space/space-exploration/proposed-spacecraft-could-carry-up-to-2-400-people-on-a-one-way-trip-to-the-nearest-star-system-alpha-centauri
https://en.wikipedia.org/wiki/Tipler_cylinder
Thursday, August 14, 2025
A paperclip-sized probe will research the edge of the black hole in the distant future.
A paperclip-sized probe will research the edge of the black hole in the distant future.
Wednesday, August 13, 2025
Neuralink microchips can eavesdrop on the neural system.
Neuralink microchips can eavesdrop on the neural system.
The Neuralink microchip is a tool. That can make paralyzed people live more fulfilling lives. Neuralin microchips are installed in the patient's brain. And they can be connected to the computers. That allows users to control the computer using their thoughts. That thing is a brain-computer interface (BCI). This connects the human brain straight to the net. That opens the path to control remote robots using EEG. Those systems' data security must be over the top. If those systems are hacked, the results can be devastating.
That BCI interface allows a user to control the computers, mobile telephones, and all other electronics using that microchip. The computer is the key to controlling physical things. And that's why BCI is the key element to control physical tools. The idea of the BCI was introduced in the Graig Thomas novel "Firefox". In that novel and movie, the pilot controlled the super fighter's weapon systems using the BCI.
The BCI system that allows the use of user interfaces using EEG is the tool that can make more than Graig Thomas's fictional system ever could. Firefox was written in 1977, and that means modern neuralink applications are bypassing that fiction. And the reality is turned more impressive than fiction. The AI and advanced data technology are turning fiction into fact. The AI-controlled microchips can transmit data to the brain.
Darth Vader, a fictional character from the Star Wars movies, is one version of the human-robot hybrid. The BCI can make that thing possible. The bionic robot can be connected to the brain using the BCI.
And that advances learning. The BCI system makes technical remote viewing possible. That happens by connecting those microchips to the surveillance cameras or robot bodies. The same system can allow people to transmit their sensorial data and other things to other people across the air. Those microchips have their ultimate risks. That risk is hacking. The AI-based systems can also use neuro-implanted mictochips to project a person's thoughts to the computer screen.
The neuralink-type microchips that operate with Bluetooth allow the user to connect themselves. Straight into the internet using things like mobile telephones as sockets. The internet can make it possible for a person to transmit things like tastes, visual images, and the sense of touch over the net.
The sense that the neuralink microchip transmits depends on the brain area where the chip is installed. That thing gives an ultimate experience that the brain cannot separate from personal experience. And that is the risk in those systems. Those microchips can also transmit things like other people's memories. Or maybe the AI can create synthetic memories that are the synthetic EEG curves. If those curves are sent to the right memory area in the brain. Our brain cannot separate those " synthetic memories" from real memories.
The brain-implanted microchips are tools that can make things like a Darth Vader suit possible. Those microchips can control things like a bionic prosthesis. That thing means that the robot-human hybrids are possible. Brain-implanted microchips can make incredible things possible. But a technical advance can make it possible to use intelligent tattoos that are miniature microchips to communicate with the brain. Those very small microchips and antennas can give enough accuracy for the data transmission between the computer and neural structures.
https://www.rudebaguette.com/en/2025/08/elon-musks-neuralink-launches-mind-control-chip-trials-in-uk-paralyzed-patients-become-human-guinea-pigs-in-this-shocking-experiment/
https://en.wikipedia.org/wiki/Brain%E2%80%93computer_interface
https://en.wikipedia.org/wiki/Firefox_(novel)
Saturday, August 2, 2025
Quantum microchips and photonic interactions.
Thursday, July 31, 2025
New drone carriers are the most dangerous things in the world.
"Illustration of the Jiu Tian drone carrier, the world's largest, poised to revolutionize military operations with drone swarms." (Rude Baguette, “This Isn’t a Ship, It’s a Swarm Factory”: China’s Giant Drone Carrier Alarms Military Analysts Worldwide) The super- and probably hypersonic applications of that system can be more effective than this drone mothership.
The Chinese drone carrier can be only the beginning of a new type of independent drone swarm carriers. Basically, every type of system can carry drones. Satellites or ballistic missiles can also carry drone capsules. Or things like cluster bomb units can also carry drones. And that makes those systems versatile for many purposes. Regular cargo planes can drop drone swarms from high altitude.
And things like airships and balloons can also carry capsules that can release drone swarms. A Ukrainian company introduced a small drone boat that carries another drone on its deck. Larger drones can carry more drones than those miniature systems. It’s possible to put quadcopters on the nose of underwater drones and launch those systems underwater. Artificial intelligence gives even small-sized drones the ability to make evasion movements when they detect counterfire.
Drones can also slip into buildings and observe things like computer screens. Basically, the drone can also insert a USB stick into the targeted system and download computer viruses into that system. A logical bomb is a virus that responds to a certain signal. And that can leave the entire area without defense. A drone can also carry things like a Mesh station. That can link all data that travels on the net to the outsider eavesdropper.
"Ukrainian unmanned riverine surface drone Ursula, developed by NoviTechNet, carrying a UAV onboard. 2025. Source: YouTube/Association of Ukrainian Engineers." (https://euromaidanpress.com/2025/07/20/drone-boat-ursula/)
Droneswarms can cause lots of damage in the target areas. The optical fiber makes drones immune to the standard ECM systems. But the high-power EMP can destroy those drones’ electronics. The only weakness of the fiber-optical control system is the wire. If some other drone finds that fiber, it can cut it. Or the laser system can also cut the optical fiber that is behind those drones. But the next step is the AI-controlled drone. The AI allows drones to operate independently without outside control. The laser systems, like optical wireless data transportation, also make it possible to create guidance systems that are hard to jam.
But those systems require direct contact with the transmitter. This is why things like pseudosatellites or high-altitude platform stations (HAPS) can be the right tools for delivering drone swarms. The HAPS can itself be a robot airplane, balloon, or airship that drops those drone swarms to areas. The drone itself is a multipurpose tool that can search for missing people and give warnings about things like volcanic eruptions. But those systems can also deliver destruction and fear. The high-speed stealth interceptors that can be manned or unmanned systems can deliver drone swarms into the area. Those kamikaze-drones can search and destroy the anti-aircraft systems and keep their crews busy, when the other systems attack harder targets.
Laser- and microwave-based systems can destroy drone swarms. But those systems must detect drones before they can act. There is always the possibility that drones can travel on the ground or underwater, and then another drone that hits a laser or microwave weapon from behind can destroy those weapons. The power that those systems use should be so high that they destroy the physical components of drone swarms.
https://euromaidanpress.com/2025/07/20/drone-boat-ursula/
https://www.rudebaguette.com/en/2025/07/america-built-it-but-spain-took-it-as-us-space-balloon-pioneer-gets-snapped-up-and-sparks-furious-clash-over-tech-ownership-and-national-pride/
https://www.rudebaguette.com/en/2025/07/nasa-calls-it-the-skyfall-maneuver-as-plan-to-drop-6-mars-helicopters-mid-air-divides-experts-and-fuels-outrage-over-billion-dollar-space-risks/
https://www.rudebaguette.com/en/2025/07/this-isnt-a-ship-its-a-swarm-factory-chinas-giant-drone-carrier-alarms-military-analysts-worldwide/
https://en.wikipedia.org/wiki/High-altitude_platform_station
The new drone can operate on land, in the air, and underwater.
"Illustration of a 3D-printed drone transitioning between air and water environments, generated by artificial intelligence." (Rude Baguette)
The new drone can operate on land, in the air, and underwater.
In the 1930s, the Soviet engineers tried to create the aircraft-submarine combination. That system could slip near the target underwater and launch attack systems. Then that system can fly away from that area. The problem was that technology was not advanced enough. But AI-controlled quadcopters can make it possible to create that kind of system. Theoretically, the nuclear-powered systems can make even full-size “flying submarines” possible. The system can use quadcopter technology. The new drone can dive and fly. But there is a possibility to make those drones more versatile than systems that can fly and dive. The new drone can have multiple sensors, such as sonars and radar altimeters, at the propeller frames.
The quadcopters are less sensitive than helicopters to cases where they hit some walls if their propellers are protected by using frames. The rotating frame allows the system to travel through very narrow points. And if the system can adjust the propeller's position by pulling them together when the robot or quadcopter system swims through a narrow hole, it makes those systems more flexible than a regular helicopter can be.
But the smaller systems can make it possible to create systems that can fly, dive, and drive on roads.
The new drone can operate in the air and underwater. An interesting thing in hydro- and aerodynamics is that using the same dimensions, it is possible to make many sizes of crafts from pocket-size applications to truck-size systems. The next step can be a drone that can drive on roads, fly, and travel underwater, which can slip in places where regular drones cannot operate. Those drones can travel in aircraft safety hangars. And the AI-controlled drones can stay on the ground and wait for the right moment.
That kind of technology is the new tool for many things, from research to leisure, and military applications. The drone that can turn its propellers to push along the frame can make it possible for those systems to operate underwater. Then the propellers or propeller pairs can turn into positions that make the system a “regular” quadcopter. And finally, when the drone operator wants to drive on the road, the propeller frames act as wheels. Those drones can act as research systems, or they can even transport groups of people.
The high-tech system operates almost independently. And that makes the system easy to handle. Those systems can be manned or unmanned. And they can be dropped from airships, aircraft, or from submarines. The ability to travel on ground, airborne, or underwater makes it possible for drones to operate in complicated situations. They can observe drain systems. They can travel in caves that can be very narrow. The ability to travel in three elements gives those drones abilities that can be used in some accident, or as a military target.
Theoretically, that kind of drone can carry even small nuclear explosives. Those drones can be delivered from some airships or bigger drones. And the thing is that those modern drones can be carried using manned aircraft, or some larger-sized drones, or even satellites. There are many roles that drones can play. They can travel over an area and send wake-up signals to the eavesdropping and surveillance tools that somebody has hidden in offices and other rooms.
https://www.rudebaguette.com/en/2025/07/this-thing-shouldnt-even-work-viral-student-drone-stuns-engineers-as-it-flies-dives-and-swims-like-a-high-tech-beast/
Saturday, July 26, 2025
The spaceborne missile defense platforms can be a reality sooner than we thought.
The golden dome chief said that spaceborne anti-missile systems are possible today. The Reagan era’s strategic defense initiative,(SDI), was too futuristic. The reason for that was the primitive laser and data processing technology. But today, systems like laser weapons and independently operating space missile platforms are possible. The image-recognition systems make it possible to select the right targets from the suspected incoming missiles, and those systems can also destroy enemy satellites. The idea of those systems is that high-orbiting satellites see missile launches.
And then they can try to destroy those missiles using rockets or some directed energy weapons like railguns, lasers, plasma, or microwaves. The reason why those platforms are in high orbit is that they should have the ability to avoid ground- or atmospheric-based anti-satellite (ASAT) weapons. The problem with those anti-ballistic missile (ABM) systems is that. If the enemy knows their trajectories, it can send things like a metal ball-swarm to orbit in the opposite way to those weapons. The missile can be shot from the other side of Earth, and it must raise those metal profiles to the same trajectory as the ABM weapon.
The idea of the ABM systems is not new. The Patriot and other kinds of anti-aircraft missiles can shoot enemy ballistic missiles down. But the problem with those kinds of systems is that they are created to shoot down tactical, conventional missiles. The problem with strategic missiles is that if nuclear missiles are destroyed over some territory, that spreads plutonium all around the area. A counter system like Soviet/Russian ABM-1 “Galosh” and the U.S. Nike Zeus that shoots enemy missiles down by using thermonuclear warheads. The radioactive debris and high-energy ions will make that trajectory useless.
Soviet Energia rocket with Polyus spacecraft.
"A notional rendering of China's reusable Shenlong space plane. (Image credit: Erik Simonsen/Getty Images), (Space.com, China's space plane apparently deployed 6 'mysterious wingmen' in orbit)
The nuclear warhead can send high-energy radiation across the Earth, destroying lots of its own and enemy satellites. If that detonation happens over its own territory, the EMP pulse destroys electronics below it. In the 1960s, the U.S. and the Soviets tested or researched systems that were modified fractional orbital bombardment systems. One of those systems was the Soviet "Polyus". Spacecraft that could carry a laser weapon and space mines. That system flew once in 1984, and the rocket's failure caused the Soviets to stop that program.
Those systems were nuclear bombs that were positioned in an orbital trajectory. Those nuclear weapons could attack cities. Or they can detonate at an orbiter. That makes them space mines that can have ABM and ASAT roles. There is a possibility that in 2023, the Chinese shuttle that deployed six mysterious “wingmen” tested the ability to release and collect space mines from the orbiter.
The other problem is the changed missile tactics. When those counter ballistic missiles were created, they developed against the missile mass-raid. The fireball of the warhead that detonated in the middle or a little forward of the incoming missiles will destroy those warheads with radiation and an EMP pulse. But the problem is that the missile tactics have changed. The nuclear strike can be made using multiple waves. That can cause a situation where the defender must shoot more than enough nuclear warheads into space. And that destroys lots of satellites.
This is the reason why the small-sized shuttles that can use stealth technology are suitable for ASAT and ABM operations. Those systems can check the orbital defense platforms' conditions. And they can deliver and collect sub weapons.
https://www.airandspaceforces.com/guetlein-first-priority-golden-dome-c2/
https://www.space.com/china-space-plane-depoyed-mystery-objects
https://www.spacedaily.com/reports/Chinese_spacecraft_launched_mystery_object_into_space_before_returning_to_Earth_999.html
https://en.wikipedia.org/wiki/ABM-1_Galosh
https://en.wikipedia.org/wiki/Nike_Zeus
https://en.wikipedia.org/wiki/Polyus_(spacecraft)
https://en.wikipedia.org/wiki/Strategic_Defense_Initiative
Tuesday, July 15, 2025
Wired drones are hard for defenders.
The wired, fiber optic drones are new terrifying tools for the drone world. Those drones are impossible to jam, using standard jammer systems. There are, of course, plans to use things like laser rays to cut those drones' control wires. The other thing is that there is a possibility to use extremely high-power EMP weapons against those drones. The difference between a jammer and EMP is that the last one destroys the target's electronics. Actually, that tool is not new at all.
"In the early 2000’s, US military research agency DARPA developed an idea for a loitering munition controlled by fiber-optic cable under the Close Combat Lethal Recon program, but it was never fielded". Those DARPA studies were so-called theoretical research. Russian and Ukrainian military forces turned that thing into reality.
The other way could be to use other drones to follow vehicles that travel on the terrain. The drone can try to use AI-based systems that combine image and sound detection which gives a warning to the military group that the wired drone is coming. And then they can aim things like a shotgun at those drones.
The other way is to use laser systems that are based on technology that uses lasers to terminate 30 mosquitoes in a second. Those systems require new and more powerful lasers than mosquitoes require. The problems with shotguns and machine-shotguns which are machine guns that use shotgun ammunition are that those systems require physical ammunition. The problem is that there can be thousands of drones. Laser or microwave systems can destroy electronics in those drones.
And that is one of the things that can protect the defender. The fact is that there is not very much to do against those small and deadly systems. The advancements of drones are very fast. Those systems can operate in many ways. The operator who uses the fiber-optic drone can use wired remote control that allows those operators to stay away from the control unit that sends control signals to the drone. The laser communication systems can also transmit data to the control unit. If that data line is protected by some wall that system is impossible to detect.
Optical fiber and straight laser communication are hard to jam. The operative distance for those drones is about 50 km. And the thing is that there are many types of variants for those systems. The drone control unit can be in a forest and the system operator can operate the system from a distance using radio-data transmission to a radio. Then that radio can be connected to those control units using electric or optical fibers. The control can happen through the internet.
The problem with those drones is that they cannot operate over long distances behind the combat areas. The drone strike between trains can happen simply by flying them into another train. And when operators see a target they launch drone swarms against that. The fiber-optic drones require the local operators or some other way to send signals to the drones.
And the advancement of electronics means that sooner or later the smallest possible drones can use independent target recognition and attack. When that kind of drone gets its mission it will search and attack independently. The lasers and coherent radio waves are things that are also very hard to detect. Those systems can make things like jet fighters cooperate with drone swarms.
https://en.wikipedia.org/wiki/Fiber_optic_drone
Monday, July 14, 2025
What kind of tools does the next-generation particle research need?
The problem with particle accelerators is that they cannot grow endlessly. Things like the Large Hadron Collider, LHC are operating at their ultimate energy level. And that means there must be new particle accelerators and colliders for new results. That means the LHC’s “only” big discovery was the Higgs boson. Sometimes researchers discuss the possibility that the Higgs boson that the LHC found may not be the Higgs boson that physicist Peter Higgs predicted. The LHC detected a new boson, but it's possible that the Higgs boson’s energy level was too low compared to the energy level that Peter Higgs predicted for his boson. The question is was the LHC found the same Higgs boson that Peter Higgs predicted?
But confirming that thing is harder than anybody predicted. The existence of the Higgs boson is so short that it’s hard to observe. But there is a so-called small asymmetry that means that there can be some other particle inside that boson. The new particle accelerator called the Future Circular Collider, FCC, would need at least 100 kilometers in diameter to really make the new science. And maybe in the distant future, the Earth will get a new ring.
That ring is the particle accelerator that can give answers to the deepest questions like where gravity really comes from? The high-energy particle accelerators are required to shoot the smallest and highest-energy particles out. There are tested things like accelerated particles using laser rays and photons that kick electrons and positrons forward. In some visions, the particle accelerator can be two particle accelerators. The annihilator explosions around the internal accelerator could pump more energy into particles. Or in other versions photons that kick electrons and positrons forward will be created using annihilation. When the system pushes electrons forward the system explodes antimatter behind them.
"The first muon ever detected, along with other cosmic ray particles, was determined to be the same charge as the electron, but hundreds of times heavier, due to its speed and radius of curvature. The muon was the first of the heavier generations of particles to be discovered, dating all the way back to the 1930s." (BigThink, How particle physics will continue after the last collider)
"Bubble chamber tracks from Fermilab, revealing the charge, mass, energy, and momentum of the particles and antiparticles created. This recreates similar conditions to what was present during the Big Bang, where matter and antimatter can both be readily created from pure energy. At the highest energies, all particles and antiparticles can be created, but at energies corresponding to “only” a temperature of ~10 billion K or so, electron-positron pairs can still be spontaneously created." (BigThink, How particle physics will continue after the last collider)
"The Future Circular Collider (in blue) would overlap slightly with the current Large Hadron Collider, but requires an additional ring (and tunnel) somewhere upward of 80 km in circumference: dwarfing the LHC’s current 27 km circumference. Bigger tunnels and stronger magnets are needed for a more energetic hadron collider, with the FCC proposing ~16 T magnets, approximately double the LHC’s current magnet strength." (BigThink, How particle physics will continue after the last collider)
"This illustration shows a hypothetical ring around the Earth, which could represent a particle accelerator even larger than the Earth’s circumference. With approximately ~1500 times the radius of the Large Hadron Collider, such an accelerator, even with only slightly more advanced magnet technology, would be thousands of times more powerful. A particle accelerator that was merely a factor of ~10 more powerful than the LHC could potentially shed tremendous light on the matter-antimatter asymmetry puzzle." (BigThink, How particle physics will continue after the last collider)
"In this artistic rendering, an active, supermassive black hole whose jet points at us (a blazar) is accelerating protons to extreme energy, producing pions as daughter particles, which in turn produce neutrinos and gamma rays. Extreme events in energy are thought to be generated by processes occurring around the largest supermassive black holes known in the Universe when they’re actively feeding. The energies of these cosmic rays vastly exceed those achieved in terrestrial accelerators." (BigThink, How particle physics will continue after the last collider)
"By taking a hot air balloon up to high altitudes, far higher than could be achieved by simply walking, hiking, or driving to any location, scientist Victor Hess was able to use a detector to demonstrate the existence and reveal the components of cosmic rays. In many ways, these early expeditions, dating back to 1912, marked the birth of cosmic ray astrophysics." (BigThink, How particle physics will continue after the last collider)
It’s possible that the AI helps to predict the point where the highest energy particles hit the atmosphere. Or the point where high-energy cosmic bursts travel. If the system can predict those high-energy bursts places and times it helps to fly the system to receive those signals. The high-flying balloons, drones, and airships can collect those high-energy particles with their sensors. If the system is automated, that saves pilots from the cosmic radiation.
The system that uses annihilator photon acceleration can collect that antimatter from the solar wind. The system transforms electrons that hit the accelerator’s shell into antimatter. And when there is enough antimatter that system can detonate those particles. The antimatter can give extremely high energy impacts to the particle accelerators and create ultra-high temperature plasma. High-flying aircraft can also collect antimatter from the high atmosphere. In that case, the system uses the chamber where the wall is made of gold. When high-energy particles like electrons hit that chamber the gold layer transforms them into anti-electrons.
The problem with particle accelerators is when an electron or any other particle turns its direction in the circular collider it releases photons. That means when the direction of the particle changes it loses its energy. The spaceborne systems can use solar panels to get energy for the annihilators. Then the main energy source for those monster colliders is annihilation. But those visions are far, far away in the future. That kind of system could require rings that are larger than Earth's trajectory around the Sun.
The problem is that when the new systems operate always within its highest possible energy level the new science requires new accelerators. And the size of the accelerators cannot endlessly grow. And the particle accelerator that surrounds Earth requires the ultimate change in the political environment. And there is always the possibility that something goes wrong.
So, maybe. The futuristic extremely large particle accelerators will be created far away from Earth. Because if there is a small metal bite like iron dust in the accelerator and then somebody puts it on, that iron bite can impact the particle accelerator's walls causing a terrible situation where lots of energy will be released.
There is always the possibility of using things like cosmic high-energy bursts to make the energy that rises above the energy level that particle accelerators can get from Earth. The energy level of those cosmic energy bursts is ultimately high. But the problem is that those cosmic energy beams and particles that ride in them are hard to predict. Cosmic energy bursts happen all the time. But for collecting those energy bursts the system requires a precise place and time where that energy beam travels.
The high-flying aircraft can also collect and detect cosmic radiation and particles that arrive in the Earth's atmosphere. Maybe artificial intelligence, AI can help to locate the points where the highest energy particles hit. And if the system can predict the time when those particles hit, that allows it to transfer aircraft to collect those particles into its sensors. The fact is that drones or high-flying airships can make that mission. The fully automated system saves pilots from the cosmic radiation. And that thing makes it possible to create new methods to observe the highest energy particles in the universe.
https://bigthink.com/starts-with-a-bang/particle-physics-continue-last-collider/
https://www.space.com/28132-nasa-airship-challenge.html
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