Showing posts with label futuristic systems. Show all posts
Showing posts with label futuristic systems. Show all posts

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. 


"Illustration of a gram-scale nanocraft journeying towards a black hole." (Rude Baguette)


Researchers plan to create a paperclip-sized probe whose purpose is to transmit information from the edge of the black hole event horizon. That probe will be sent to the black hole's material disk. And there it can use quantum technology like hovering quantum or nanoparticles to capture and send information from that area. The material disk will pump energy to those particles, and the observer can follow those oscillations from outside the material disk. 

One of the most fascinating versions of the data transmission from that ultimate high-energy area is to use superpositioned and entangled particle pairs. The material disk will pump energy to particle that is in it. And then another particle will receive information that the first particle sends. That probe will act basically without electronics. The system must only put a particle pair. Where another particle is in the lower energy level. To the superposition and entanglement. When the probe closes the black hole, its material disk will raise the particles' energy level in the probe, called Cosimo Bambi can transfer data to the receiver. 

The Cosimo Bambi can make this journey to 20-25 light-years away from Earth. But the problem is this. There are no known black holes in that distance. The mission will be completed in about 70 years. But that requires. There is a black hole in that distance. The closest known black hole is 1560 light-years from Earth. And that means the mission is doomed to fail if there is no black hole closer to Earth. 

The probe could use quantum technology and high-power lasers to travel near black holes. But there is one problem: the distance to the closest known black hole is enormous. There is possiblity that there is a black hole just 20-25. light-years away from the Earth. But there should be a confirmed black hole in that distance that the probe can reach it. 

The problem is always similar. The key problem is how to take this probe close enough to the black hole. The closest known black hole is about 1560 light-years away from Earth. That means the journey to that black hole takes a very long time. But the black hole probe gives interesting ideas for the futuristic quantum computers. 



Maybe this is possible in the future...



This keeps the transmitting side in quantum entanglement on a higher energy level than the receiving particle. These kinds of systems can also be used to create new types of quantum computers. The idea is that the transmitting sides of the quantum entanglements are at extremely high temperatures. And the receiving particle's energy level is as low as possible. If the system can use a black hole for that purpose, the quantum computer can put an artificial, or small primordial black hole, into the ball-sized chamber. Then the data will be driven to transmitter particles that are in the capsules. 

Then the quantum computer will send those capsules to the black hole. And the plasma around it keeps the transmitter-side particles in a higher energy level than the receiving particles. Maybe. This kind of system can operate using the regular, high-energy plasma. The idea is that the data will transfer to the transmitting particles that are in the capsule. The capsule that can be some kind of fullerene will act like a yoyo. 


The system will send it to the plasma. When plasma or some kind of EM field is around the capsule. And its energy level rises all the time. That helps to keep the transmitter side temperature in the quantum entanglement at a higher level. The temperature in the receiving particles can be as low as possible. That maximizes the time that the system can sustain quantum entanglement. 



https://www.rudebaguette.com/en/2025/08/one-gram-probe-to-black-hole-in-70-years-physicist-unveils-laser-driven-mission-to-test-einsteins-theory-in-deep-space/#google_vignette



https://scitechdaily.com/paperclip-sized-probe-could-take-us-to-the-edge-of-a-black-holes-event-horizon/

Friday, November 8, 2024

Can antigravity be possible? And if it is, can we control it?




Where should we start? The antigravity means the hypothetical repelling side of gravity. The effect should be similar to electromagnetic repel. In the cases that somebody turns the minus or plus poles of the magnet against each other, those poles repel each other. All other fundamental interactions other than gravity are the known repelling effect. 

So that effect should be in gravity. But when we talk about the electromagnetic repel we don't talk about anti-electromagnetism. We talk about electromagnetic repel or push effect between the same magnetic poles. There are even metals like titanium that are anti-magnetic. The reason for that is that. The magnets are not affected by that kind of metal.

Virtual antigravity means things like superconducting objects' levitation above the ground. It's possible to create silently levitating aircraft or other things using superconducting objects that have chambers inside that thing. The superconducting particles can make those crafts lighter. But the problem is that those systems require high-power cooling systems. This is the reason why researchers are searching for room-temperature superconductors. The magnetic levitation systems are also virtual antigravity. But real antigravity means the gravity field manipulation that is not yet possible. 

The gravitational or "real" antigravity means that the system can cut the gravitational interaction between the object and the ground or gravity center. 

Antigravity as we know it is the system that manipulates gravity waves and denies their interactions between objects and gravity centers. The systems that can create those things like coherent gravity waves or standing gravity waves are far away in the future. 



Above: Superconducting object levitates. "University of Illinois Chicago scientists are working on materials that could allow superconductors to function at room temperature, eliminating the need for extreme cooling". (ScitechDaily, Superconductors at Room Temperature? UIC’s Groundbreaking Materials Could Make It Possible)

The simplest way to make an antigravity system is to create the gravity "tongue" or horizontal standing gravity wave that denies the gravity waves to reach the hovering object. Another way is to use gravitational counter waves or gravitational polarization that denies the gravity waves reach the craft or object. 

As I have many times written before. Albert Einstein introduced that gravity is the feature of the fields like Higgs field. The idea is that. The gravity field forms a low-pressure or low-energy tunnel between gravity centers. Then energy. That comes backward and pushes objects into that tunnel or against each other. The idea is like in a low-pressure tunnel. 


"A wormhole is the one way, in the context of general relativity, that immediate transport between two disparate, disconnected events in spacetime can occur. These "bridges" are mathematical curiosities only at this point in time; no physical wormholes have ever been found to exist or have ever been created, and would require some sort of negative energy, or "antigravity" source, in order to be physically real." (Big Think, Ask Ethan: Is antigravity even possible?)

So if we think that antigravity is the thing that denies those objects fall or makes them levitate. We can say that antigravity is the thing that closes this tunnel. If that low-energy tunnel between gravity centers is closed, that thing can turn the effect known as "antigravity" real. 

That means the system should only send gravity waves or coherent gravity waves between the ground and the object that should levitate. That can deny the gravitational interaction between object and ground. 

Another thing that could make antigravity real is the system that makes holes in the gravity field. In that case, the coherent gravity waves- or gravitational laser can create the energy low-pressure tunnel through the gravity field. 

In some other ideas, the system can create a miniature black hole at the top of the structure. If the black hole is more massive than the planet. That thing pulls the structure up from the ground.  

But when we think about gravity as wave movement, we can say that it's possible that someday we could polarize those waves. That polarization means that we create a layer, that denies the gravity waves travel through it. But the gravity wave polarization seems not to be possible. 

In some versions, the system should create the gravitational version of "altermagnetism". In altermagnetism, there is the magnetism inside the object. But the outsider cannot feel the magnetism. The gravitational waves that travel inside the craft or object can make the gravitational waves from the ground reflect. That thing can form standing gravity waves that prevent the gravity waves from reaching the object. The system could use the opposite directions traveling coherent gravitational waves. 


https://bigthink.com/starts-with-a-bang/antigravity-possible/


https://scitechdaily.com/superconductors-at-room-temperature-uics-groundbreaking-materials-could-make-it-possible/


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

Astronomers could have a model for why photons from GRB 221009A were at a high energy level.

"An illustration shows a photon from the biggest cosmic explosion since the Big Bang reaching Earth. (Image credit: Robert Lea (created...