Saturday, October 4, 2025

The photonic and quantum dots can make the object invisible.



Do you know how to protect layers against laser rays? One version is to use counter laser rays that counteract the incoming laser rays. When two laser rays impact each other. That thing can scatter the incoming laser beam. The system that can scatter things. Like gravity waves. Can theoretically deny the gravitational effect between objects. But that requires synthetic gravitational waves. This kind of laser forms the quantum stylus, which can make new active quantum materials. 

But that system can make it possible to make materials invisible to radar, infrared, and the human eye. Maybe those quantum needles that aim electromagnetic radiation past the object can explain dark matter. Those quantum styluses that can be the whirls in the quantum fields. Can aim the electromagnetic radiation past the object. Forming a situation where that radiation cannot reach the particle. If those EM, or quantum fields, cannot touch a particle. We cannot see that particle. 

The system can be based on two photons. One photon forms the ring-shaped captured lightwave. That lightwave can be captured around some qasiparticle. Then another photon is standing in that ring. And the system inputs energy to that standard photon. This makes it possible to create the quantum antenna that drives the quantum fields past the surface. 

The quantum needles can deny the reflection from the surface. Those quantum styluses can push the quantum fields out from their top. And if the surface below them is at a very low energy level, that can aim the quantum field to the material layer. This thing makes it possible. To create material that is invisible to radar, infrared, and even the human eye. 


Surface plasmon polaritons (SPPs) are electromagnetic waves that travel along a metal–dielectric or metal–air interface, typically in the infrared or visible frequency. The term "surface plasmon polariton" explains. The wave involves both charge motion in the metal ("surface plasmon") and electromagnetic waves in the air or dielectric ("polariton"). (Wikipedia, surface plasmon)

Surface plasmons (SPs) are coherent delocalized electron oscillations that exist at the interface between any two materials where the real part of the dielectric function changes sign across the interface (e.g., a metal-dielectric interface, such as a metal sheet in air). SPs have lower energy than bulk (or volume) plasmons, which quantise the longitudinal electron oscillations about positive ion cores within the bulk of an electron gas (or plasma). (Wikipedia, surface plasmon)

The surface polaritons (SP) and surface plasmon polaritons (SPP) can trap photons over them. With the energy fields, those photons can form the quantum needles or quantum hair. When electromagnetic radiation hits those quantum needles, that quantum needle pushes the radiation away from that point. When the incoming radiation hits the quantum needle, it turns it away from the structure, and that can turn the surface invisible because there is no reflection. The quantum stylus turns radiation away from the surface. Making the cone that travels past the structure. 

The surface polariton is the thing that can also form around a particle or an elementary particle. This gives one explanation for the dark matter. The idea is that the dark matter particles can be surrounded by the quantum hair. That quantum hair that can be the quantum-tornadoes around the elementary particle can deny reflection from the particle. There is a possibility that this kind of structure can focus the reflection that the particle gives into such a small area. We cannot see that reflection. 






“The electric field (E-field) of an SPP at the silver-air interface, at the frequency where the free-space wavelength is 370 nm. The animation shows how the E-field varies over an optical cycle. The permittivity of silver at this frequency is (−2.6 + 0.6i). The picture is (0.3 × 370 nm) across horizontally; the SPP wavelength is much smaller than the free-space wavelength.”(Wikipedia, Surface plasmon polariton)






“The E-field of an SPP at the silver-air interface, at a much lower frequency corresponding to a free-space wavelength of 10μm. At this frequency, the silver behaves approximately as a perfect electric conductor, and the SPP is called a Sommerfeld–Zenneck wave, with almost the same wavelength as the free-space wavelength. The permittivity of silver at this frequency is (−2700 + 1400i). The picture is 6 μm across horizontally.”(Wikipedia, Surface plasmon polariton)

As you see from the images above. If there is a horizontal wave that travels across the field, that thing can turn those reflecting waves in the same direction as the horizontal wave travels. 



“Schematic representation of an electron density wave propagating along a metal–dielectric interface. The charge density oscillations and associated electromagnetic fields are called surface plasmon-polariton waves. The exponential dependence of the electromagnetic field intensity on the distance away from the interface is shown on the right. These waves can be excited very efficiently with light in the visible range of the electromagnetic spectrum.” (Wikipedia, Surface plasmon)

The surface plasmon (SP) can form a virtual surface that scatters the reflection. That acts like a stealth structure. But in the other types of wavelength. The quantum needle acts the same way as a stealth surface that scatters radio waves. But this surface puts optical light waves. To slide over the surface. 



If the quantum field can make a structure. That looks like. A supersonic pressure cone. That thing turns material invisible to the observer. If the system must turn radio waves away from that pressure cone, it must only ionize gas that makes the pressure cone. Those ions will aim incoming radio waves out from the surface. The cone aims the radio waves into the sides. And denies reflection to the radar. The quantum field manipulation acts in the same way. 

Because the quantum field cannot touch the surface, there is no reflection. In reflection, a particle stores energy until its energy level turns high enough that it can release its extra energy in the form of a photon. If there is no energy flow that touches the particle or that energy cone’s energy level is too high, the energy that the particle sends cannot travel through the wall of that energy cone. 

Or when the quantum field closes to that particle, it’s possible that the quantum styluses drive energy away from the structure. The idea is that when wave movement impacts the quantum needle, it aims the wave away from the structure. 

The idea is taken from the pressure cone that forms around supersonic aircraft. The thing that forms the pressure cone is the airflow, and the airflow can form this cone if the object is static and the wind blows against it. The thing that forms the pressure wave is the needle at the nose of the aircraft. 

The idea is that if the particle or quantum structure has a similar needle that aims the quantum cone in a similar way. As the aerodynamic needle aims the airflow. This thing makes it possible. To aim the quantum fields away from the particle or surface. If the quantum field doesn’t touch the surface, it turns the surface invisible, because there is no reflection. 


https://en.wikipedia.org/wiki/Polariton


https://en.wikipedia.org/wiki/Surface_plasmon


https://en.wikipedia.org/wiki/Surface_plasmon_polariton



Polaritons are a new tool. To control light.



Illustrative scenario of propagation of DPP, at Terahertz frequencies, induced by the tip of a s-SNOM microscope in topological insulators coupled nano-antennas. Credit: Leonardo Viti et al.(ScitechDaily, Scientists Unlock New Way To Control Exotic Light Waves in 2D Materials)

Polariton is the quasiparticle that forms when other quasiparticles, like excitons and phonons, make a strong connection with photons. 

“Surface plasmon polaritons (SPPs) are electromagnetic waves that travel along a metal–dielectric or metal–air interface, practically in the infrared or visible frequency. The term "surface plasmon polariton" explains that the wave involves both charge motion in the metal ("surface plasmon") and electromagnetic waves in the air or dielectric ("polariton")”. (Wikipedia, Surface plasmon polariton)

“Surface plasmons (SPs) are coherent delocalized electron oscillations that exist at the interface between any two materials where the real part of the dielectric function changes sign across the interface (e.g. a metal-dielectric interface, such as a metal sheet in air). SPs have lower energy than bulk (or volume) plasmons which quantise the longitudinal electron oscillations about positive ion cores within the bulk of an electron gas (or plasma).”(Wikipedia, Surface plasmon)





“Schematic representation of an electron density wave propagating along a metal–dielectric interface. The charge density oscillations and associated electromagnetic fields are called surface plasmon-polariton waves. The exponential dependence of the electromagnetic field intensity on the distance away from the interface is shown on the right. These waves can be excited very efficiently with light in the visible range of the electromagnetic spectrum.”(Wikipedia, Surface plasmon)

Surface plasmon polaritons (SPP) are tools that can be used to create systems that change the wavelength of the reflecting radiation. The polariton is one of the quasiparticles. The quasiparticle is the electromagnetic field or anomaly in the electromagnetic field that acts like a real particle. The quasiparticle can be used to trap other particles in its position. When we think about excitons. Quasiparticles that are holes in electromagnetic fields, there is a possibility to trap an electron, quark, or some other small particle above it. An exciton forms when an electron jumps out from its trajectory, and then it starts to orbit its own hole. That means the exciton behaves like a real particle, but there, in the position of the protons, is the electron hole. 

In quantum systems, those hovering particles can create quantum entanglement between them. 

Another thing. That can make things interesting are polaritons. Surface polaritons are like stickers. With standing waves above the surface. Those things can make it possible. To control light and other electromagnetic radiation over the layer. 

The Dirac Plasmon Polaritons (DPP) are one way to control light in 2D metamaterials. That thing makes it possible to create quantum entanglements between those quantum dots. Another thing that the DPP can make. It is to control the light on the material's surface. The DPP polariton is the quasiparticle. That forms from the wrapped and standing light waves, those polaritons can make the system. Which makes it possible. To adjust the reflecting light wavelengths. This thing means. That the DPP polritons can form the virtual surface that acts like a surface. With the physical waveform. The DPP polariton makes it possible. To make a reflection that scatters around. This makes the structure harder to see. There is also a possibility. To create a system that can adjust the wavelength of the radiation. 

The thing that the DPP polariton- or some other quasiparticle can make it to stretch or warp the wave movement, and that can make it possible to transform IR-radiation into radio waves. Or in the most interesting model, the polariton can transform things like gamma rays. into radio or IR waves. And if that technology is possible someday, researchers can create a system. That can transform other radiation types. Into gravitational waves. Theoretically, that is possible by adjusting the wavelength of the radiation. 


https://en.wikipedia.org/wiki/Exciton


https://en.wikipedia.org/wiki/Polariton


https://en.wikipedia.org/wiki/Quasiparticle


https://en.wikipedia.org/wiki/Surface_plasmon


https://en.wikipedia.org/wiki/Surface_plasmon_polariton


Friday, October 3, 2025

Hypersonic missile technology can turn intelligence and military forever.

Miniature shuttles and hypersonic technology can cause problems in all types of defense systems. The miniature shuttles can also operate as Hypersonic Glide Vehicles, HGV. And those systems can operate as the new types of fractional orbital bombardment systems. The rocket launches the shuttle to the orbiter, and then it can wait in order to return to base or attack its targets. 

Those shuttles can be launched to the orbiter. There they wait orders to dive into the atmosphere. Those miniature shuttles can act as super kamikaze drones. That can carry nuclear warheads in its cargo bays. The shuttle can dive into the atmosphere and detonate at the target. The miniature shuttle X-37B. Made its 908-day mission. 

There, it tested new military equipment. Like  Photovoltaic Radio-Frequency Antenna Module, PRAM. The X-37B is not designed to carry humans. It could take an astronaut into its cargo bay, but the main purpose of that small spacecraft is to act as a combination of satellite and spacecraft. Those miniature shuttles can operate. In reconnaissance missions. These are targeted at ground targets or other satellites. Those systems can also operate as reusable reconnaissance satellites. 




X-37B


And in a warzone. They can drop miniature drones or bombs into the target areas. The shuttle can simply take kinetic energy, or flechette rounds, or some type of glide bombs into the atmosphere. Or the shuttle can also drop nuclear grenade-equipped glide systems to target areas. 

Those shuttles can have the classified stealth versions. The stealth HGV that is parked on the Earth orbiter can be an excellent tool for a surprise attack. When the Chinese miniature shuttle flew in formation with six interesting targets, that could be the test, where that shuttle delivered nuclear weapons into space. And then collected them away. 

That  system can deliver things like space mines. Those mines are nuclear weapons that some systems deliver to space. Then those mines wait for a command to explode. That causes the EMP pulse. And destroys many satellites. The conventional space mine, equipped with conventional explosives, can also have a destructive effect. It can deliver debris. All around it. And that denies the use of that orbiter. 





Above: Hypersonic missiles can be similar to the Pegasus rocket. 


The miniature shuttle is basically. One form of the drone. Hypersonic drones have a combination of ramjet and rocket engines. When the system rises from the ground, the iris at the front of the ramjet engine is closed. The engine uses the internal oxygenizer. In that case, the rocket-ramjet acts as a rocket engine. When the speed of the aircraft rises high enough, the system opens the iris. 

And then the system starts to breathe atmospheric air. That kind of space system can operate in the deep atmosphere and at the Earth orbiter. It is also possible to install the jet engines in that system. That allows the jet fighter to fly at low altitude, and when that system requires high speed. It can change the fuel transmission to a ramjet. Or the rocket turbojet can involve a rocket engine in its afterburner. 


When an aircraft requires a high altitude, it closes the iris between the afterburner and turbine. Then the system starts to drive propellant and oxygen to that afterburner. Another version is that the iris or flap is at the front of the turbojet. When the system must rise to an extremely high altitude, the flap at the front of the engine closes, and the system starts to use oxygen stored in the oxygen tank. 



“ASAT (Anti-satellite) missile launch on Sep. 13, 1985, at the Pacific Missile Test Range, CA.(Wikipedia)

The hypersonic aircraft with speed.  Mach 5+ can also operate. As the platform for anti-satellite missiles. The missile can be under the hypersonic interceptor’s body, and then the system jumps up. When that system is at the top of its ballistic jump. It can release its ASAT weapon. That gives the weapon a higher altitude capacity than the F-15. This type of system can be the tool. 

That poses a very big threat to satellites. Satellites play a primary role in modern warfare. That makes them a very important target for the opponent. The hypersonic aircraft, which can operate as a supersonic aircraft and a hypersonic system, can lurk in lower altitudes. When the radar and optical systems detect a target, the aircraft can travel under it. And then accelerate and launch the ASAT system. 





A Kh-47M2 Kinzhal being carried by a Mikoyan MiG-31K interceptor (Wikipedia)


The hypersonic missiles are not always small, air-launched systems. The hypersonic missile can be the same size as the silo-based ICBM. These kinds of systems are extremely dangerous. The ICBM launches a hypersonic missile over the atmosphere. Then the system falls back, and the ramjet engine starts. 

The hypersonic systems that can fly at high speed. The upper atmosphere can be a hard target for air defense. Those systems can fly in waves, and some of them can drop sub ammunition. Against air defense. The hypersonic missile is not necessarily a scramjet-using, air-breathing system. The hypersonic missile can be quite a regular missile. That has wings with the ability to travel in the stratosphere. 

The hypersonic systems can also be mounted on regular intercontinental ballistic missiles. The ICBM takes a hypersonic missile to the position where it should dive back into the atmosphere. There, the hypersonic missile starts its Ramjet or Scramjet engines. And that makes these types of systems and their trajectories very hard to predict. The hypersonic weapon can also involve things. Like ECM and EMP systems, whose mission is to suppress the air defense. 


https://asiatimes.com/2023/12/chinas-space-plane-puts-mysterious-wingmen-in-orbit/


https://www.rudebaguette.com/en/2025/09/it-was-all-planned-us-militarys-secret-908-day-space-mission-that-reveals-hidden-solar-power-weapon-technology/


https://simpleflying.com/lockheed-martin-sr-72-darkstar-hypersonic-spy-plane-nears-production/


https://www.space.com/china-space-plane-depoyed-mystery-objects


https://theaviationist.com/2025/02/21/x-37b-in-orbit-photo/


https://en.wikipedia.org/wiki/Anti-satellite_weapon


https://en.wikipedia.org/wiki/ASM-135_ASAT


https://en.wikipedia.org/wiki/Boeing_X-37


https://en.wikipedia.org/wiki/Kh-47M2_Kinzhal


https://en.wikipedia.org/wiki/Lockheed_Martin_SR-72


https://en.wikipedia.org/wiki/Northrop_Grumman_Pegasus


https://en.wikipedia.org/wiki/Ramjet


https://en.wikipedia.org/wiki/Scramjet


Wednesday, September 17, 2025

Curvity is the new way to control the drone swarms.

  Curvity is the new way to control the drone swarms. 



"Illustration of robots advancing artificial swarm intelligence inspired by the collective behaviors of birds, fish, and bees."(Rude Baguette, “Curvity Controls Robot Interactions”: Researchers Develop New Framework Allowing Robotic Swarms to Mimic Bird and Fish Group Behaviors)

Drone swarms could be the tool that can make almost everything. The idea is that drones can cooperate and connect their computing capacity when they must make complex decisions. Then the swarm can share missions to individual drones. When we think about robot swarms that can mimic things like bird swarms, those robots must know their position in the swarm. The answer to that question can be curvature or curvity. Rude Baguette tells the next things about curvity. 

“A key innovation of the study is the introduction of a new quantity termed “curvity.” This intrinsic charge-like quality allows a robot to curve in response to external forces, guiding its interactions with fellow robots. Each robot is assigned a positive or negative curvity value, which determines its behavior within the swarm. This innovative approach allows for the collective behavior of the swarm to be controlled, whether it involves flocking, flowing, or clustering.”  (Rude Baguette, “Curvity Controls Robot Interactions”: Researchers Develop New Framework Allowing Robotic Swarms to Mimic Bird and Fish Group Behaviors)

Assistant Professor Stefano Martiniani from New York University emphasized the potential of this approach: “This curvature drives the collective behavior of the swarm, potentially controlling whether the swarm flocks, flows, or clusters.” Such a model transforms the challenge of controlling swarms from complex programming into a material science issue, opening new avenues for research and application.” (Rude Baguette, “Curvity Controls Robot Interactions”: Researchers Develop New Framework Allowing Robotic Swarms to Mimic Bird and Fish Group Behaviors)

Sharing the system into substructures that mimic galactic groups makes it easier to create programs for robots. Each layer or level acts as one robot. 

The system can involve the next type of information. 

“You are a robot of robot group 9. Robots 1 and 2 must be ahead of you. And robot 4 must be on the left side of you. Together, you are Robot Swarm 2, and Swarms 1 must be on your side, and Swarms 3 and 4 must be behind you. Together, your place is in layer 3. That layer must be between layer 2 and 4.” Then the system has other algorithms that tell what to do if one drone is lost. 

The key question is how the robot can determine its position within the swarm. In this case, the modular structure is the solution. There can be multiple data levels, which makes the data structure operate as a mosaic. Or, rather, we can say that the structure mimics the universe. There are individual drones that are galaxies in galactic clusters. Then those drone clusters form a local cluster. Then, local clusters form a super cluster. And then the superclusters form a global cluster. Those clusters are the drone swarms. The ability to share the groups into subgroups makes it easier to program those drones. 

The idea is that the drones can form three or four drone groups. The individual drone knows. What drones are behind it, and what drones are ahead of it? The drone group acts like one drone. And then it must know what drone group is ahead and behind it. Then the drone group must know. Whether it should be above or below some of the other drones. The system can make that quite easily. It can share the drone swarm into layers. And those drones know their own layer. And then they know what drones should be below and what should be above it. Those drones can operate in squares. That can look like randomly changing forms. 

https://www.rudebaguette.com/en/2025/09/curvity-controls-robot-interactions-researchers-develop-new-framework-allowing-robotic-swarms-to-mimic-bird-and-fish-group-behaviors/


Tuesday, September 16, 2025

How to simulate the entire universe using a laptop?

   How to simulate the entire universe using a laptop? 


How to simulate the entire universe using a laptop? And can psychohistory be possible? 

The idea is this. If we want to simulate a large entirety, we must not have high accuracy. If we want to make a simulation about. How a river flows, we can use the entire river as a model. We must not care. About how a single water molecule or subatomic particle behaves. We must only know where the river flows. To make a prediction about how the river will flow, we must only know where the softest rock is to predict the channel that the river will choose. In meteorology, supercomputers can make very good predictions. If they know the forces that affect the air. In those cases, the system. Look at the entirety. It doesn’t try to make a precise and highly accurate model of how a single water droplet interacts. The system observes the large entireties. Like cloud groups to make a model, how the air mass will behave. 

Weather satellites and computers are good tools. To predict how large hurricanes behave. But those systems are helpless. When they must try to predict how tornadoes will form. Tornadoes are smaller but more destructive than large tropical storms. Tornadoes are too small for weather satellites.

Maybe. The same programs can make predictions of tornadoes. If the system uses so-called atmospheric satellites that observe smaller areas but with higher accuracy. Those systems will get information from smaller areas. But they can use similar computer systems. Researchers used to make a large-scale weather forecast. In this case, it's easy to make a planet-scale weather forecast. But those forecasts are inaccurate. 

In the same way, it's easy to make predictions about how large gas mass behaves. The system removes unnecessary accuracy and handles things like galaxies as solid forms. Those are like pins in the large system. Or maybe we should say that galaxies are like wheels. Those wheels move wave movement, fields, and large material masses over the universe. 

That means if we make inaccurate, “about” predictions. About how large gas masses are. Like galactic superclusters behave, we can make that prediction using laptop computers. In an inaccurate model, we can think that galactic superclusters are the wheels, and the universe is like a ball around those wheels. When the system starts to simulate how the galaxies behave in a local cluster. The system uses the local cluster as a scale, and galaxies are wheels. When the system makes a model of how a galactic supercluster behaves, the local clusters are the wheels. And the last version is the universal scale. The galactic superclusters are the wheels. In the large-scale simulations. The system doesn’t notice or filter out too small actors that have no visible effect on the system. 

This system is called. A variable scale model. The idea is similar to the U.S map. If we want to look at the overview of the weather over the USA. We can use the USA as a whole. But if we want to see what the weather is over in Montana. We can take a Zoom image of the state of Montana. We can use the same computer algorithms in that area. As in larger-scale images. But the higher accuracy means that we lose the entirety. 




Ludwig Boltzmann (1844-1906), Austrian physicist


Can the psychohistory turn true? 


There is a possibility that the same models. Those used for simulating the universe can be used to predict how humans behave. That is called psychohistory. In the SciFi series: “The Foundation”. The idea is that the system predicts the behavior of large human groups. The system uses large human groups. And things like their states’ influence as variables that can predict how people behave. The system makes models. Using billions of people. But if that thing is possible. The system can use the same algorithms for smaller groups. 

In psychohistory, the system looks at things. That happened in the past. Then the system searches for what those things caused. And then. The system searches for details of similar events from its environment. Because people with similar personalities should behave in similar ways in similar situations. So, the system must know. How many certain types of personalities live in an area that faces certain changes? We can think. Human groups have a certain social or psychological mass, and if a certain number of people start behaving in certain ways. That psychological mass can start to pull other people with it, only if it's large enough.

The thing that causes panic is that a certain number of people in a group start to panic. When we think that four people start to panic, that might not seem like a very big thing. But if there are 10 people in one room. And there is one square meter of space. For each person. Then four people will get the larger effect. And one of those reasons is that. There is no outside effect that can suppress the panic effect. And that makes it stronger. If the head of state goes into panic, that can escalate into a very large group. If one single person goes into panic, that has no such effect. 

And then to psychohistory: can we predict how people or nations behave? Every person. With a certain personality. Behaves in certain ways. The thing that makes predictions hard. Is that. We should know. What a person’s personality is. And that’s impossible if the researchers don’t know the entire personal history of the person. 

We can take the scale of millions or billions of people. When we think about psychology and economics. There are inaccuracies. The reason for those inaccuracies is that we don’t know every person’s background. People’s experiences model our behavior. Psychological models are almost right. And they work with most people. But those models are not working with people. Whose nature is not known. We don’t know what type of humans they are if we don’t know that person’s complete history. The personality is unknown, if there is something hidden in history. 

But there should be a certain number of  non-predicted cases. Or a certain type of standard deviation  of cases that behave in a non-predictable way. This means that large, scalable surprises are not very common cases. in large-scale models. Cases like the Kennedy assassination are very rare. They are like black swans, possible but extremely rare things. There must be an acceptable  error level in all models. Some of those black swans can be predicted. We can calculate the possibilities of asteroid hits, but there is a possibility. That some asteroids can come through the defense. Sometimes asteroids are seen. Only when they pass Earth and those things cause problems. 


https://scitechdaily.com/scientists-just-found-a-way-to-simulate-the-universe-on-a-laptop/


https://en.wikipedia.org/wiki/Boltzmann_constant


https://en.wikipedia.org/wiki/Ludwig_Boltzmann


https://en.wikipedia.org/wiki/Psychohistory


https://en.wikipedia.org/wiki/Standard_temperature_and_pressure


Monday, August 18, 2025

Every object in orbit could be an ASAT weapon.

  Every object in orbit could be an ASAT weapon. 



Researchers are worried. That China’s space-debris catcher can turn into an ASAT, an Anti-Satellite weapon. A debris catcher can also hijack other satellites. And that is the risk for national security. Satellites are vulnerable targets in modern warfare. They also play a key role in detecting enemies and providing communication datalinks and location services for both military and civilian services. The radar satellites can also detect their own troops if they carry a transponder that shows their location to radar satellites. The problem with radar satellites is that those satellites are easy to knock out. The ASAT missile can have similar systems what regular anti-radiation missile uses when it attacks regular targets. 

The drone swarms are things that require satellite-based communication and that advance and accelerate the development of anti-satellite weapons. In some models, high-power radars send EMP pulses against satellites. High-power radar impulses can destroy the satellite's electronics. Or the system can form an electric arc around the satellite. There are systems that push satellites into the atmosphere. In the Cold War era, the Soviets made so-called “Almaz” tests. where their satellites and Almaz-space stations, like Salyut 5, tested things like machine guns against satellites. There is a possibility that some miniature shuttles have ASAT roles in the military world. 

Things like Fractional Orbital Bombardment Systems, FOBS, causes the need for rapid reaction ASAT systems that can take these kinds of things out from orbit. The Chinese space shuttle made a flight with groups of mysterious objects, and that could be the test. There, the shuttle releases  and collects FOBS weapons, “space mines,” from the orbiter. The space mine means the structure whose purpose is to close the orbiter. Sometimes, miniature satellites that the kevlar wires connect together are planned for that mission. The problem is that the space mine must be removed when own operations begin. The nukes that are positioned into the orbiter can also be used to destroy other satellites and create EMP pulses that purpose it take the defense systems out. 

Things like laser systems are used to blind satellites. But there have been systems created that can destroy a targeted satellite. Those lasers and other electromagnetic systems can have megawatt-scale power. The orbital laser-satellite, with similar lasers. Used in the metal industry can cut and damage other satellites' solar panels. 

This is one thing that we must realize. And the second thing is that every object in the orbiter is an ASAT weapon. The simplest ASAT system is the satellite that collides with another satellite. This makes micro-satellites a perfect weapon. They are tools that can observe other satellites, but they can also act as ammunition, when they collide with another satellite in the case of war. Another thing is that the simple but effective version of the kinetic energy weapons is the space shotgun. In some other versions, the system uses a giant net to capture and push the satellite out of its trajectory. 

The system uses a rocket engine. The system pumps metal balls to the nozzle. And then the exhaust gas will send those balls against the targeted satellites. Or the system can use Claymore mines. To shoot metal balls at targeted satellites. Or those satellites can rocket salvos against satellites. In some visions, the system can drive a large magnet that pulls ions from the Van Allen belt to the targeted satellites. In some versions, the regular rocket transports a large number of metal balls to the orbital trajectory, making it useless. 

The problem with the ASAT weapons is this. The orbital trajectory is full of debris. Things like debris-cleaners whose purpose is to remove space junk are also excellent ASAT systems. The satellite can be put in the plastic bag, made of mylar. And then the small satellite simply pulls it into the atmosphere. The flying garbage can that takes a satellite in the tank and returns it to the atmosphere is the thing that can hijack satellites. And that system can take them to the ground for investigations. The satellite hijackers can be used to steal data from the captured satellites. 

Things like manipulator arms are things. The system can be used to push other satellites into the atmosphere. And in some visions. The satellites that carry hypersonic parachutes for return and recycle their components can also capture other satellites into those parachutes and take their targets with them. The parachutes can make it possible to research the microchips' sustainability against cosmic radiation. The problem is that the directed energy plasmoid weapons can cause similar damage to the solar plasma flow. The plasmoid weapon can knock out other satellites. And those kinds of things can be misidentified, caused by  solar wind. 

https://www.rudebaguette.com/en/2025/08/watched-net-drift-toward-a-target-in-silence-chinas-space-debris-catcher-sparks-fears-of-covert-anti-satellite-weapon-use/


https://www.twz.com/chinas-spaceplane-has-released-multiple-mystery-objects-in-orbit


https://en.wikipedia.org/wiki/Almaz


Sunday, August 17, 2025

Chinese highly automated dark factories.

    Chinese highly automated dark factories. 



Chinese dark factories are so highly automated that they don’t even need light. This is the future of manufacturing. Robots working in complete darkness. Those systems are controlled by the AI. And that makes the assembly process very effective. Human-shaped robots can make almost everything that humans can. 

An advanced machine learning toolkit allows operators. To teach machines new things. very effectively. The system needs only one robot. That can make something, and then that system can scale that new skill over the entire network. That makes robots very effective workers. And maybe those ghost factories are starting to operate in Western cities. Robot factories are interesting. Especially if human-shaped robots work in that factory. 

That is the thing. That makes the AI dangerous. The ability to teach one robot and then scale that thing to all robots makes it possible to teach robot armies very effectively. The same human-shaped robot that can make cars. It can act as a robot soldier. That is one thing that we must realize. The second thing is that kinds of highly automated systems can also make other products than cars. The new stealth systems require ultimate secrecy. And the robot workers are a solution to that problem. 



The robot worker doesn’t call the newspaper. If it makes something that is not public. Another thing is that the robot worker can change its role by pressing a button. Flexible CAD/CAM (Computer-Aided Design/ Computer Aided Manufacturing) platforms that turn the CAD drawings straight to the product. Mean that the system can change the product in minutes. The factory involves 3D printers and machine workers. Those systems can make everything. They have instructions and raw materials. Those factories can make cars, aircraft, and other robots. 

That kind of thing can make many things more effectively than humans. That means those systems are the ultimate competitors for Western factories. They can make products without brakes. And that makes them ultimate operators in the military and civil sectors. The Chinese government, like all other actors, might be interested about the robot factory as a military robot producer. There is a possibility that robot factories are installed on ships. and they can build customized robots or other robot factories if they have enough raw materials. Or the ability to search for raw materials from nature. 

The system can create quantum-correlated photons from sunlight.

"Correlated photon pairs, generated via sunlight-pumped spontaneous parametric down-conversion in a nonlinear crystal, demonstrate ghos...