Showing posts with label graphene. Show all posts
Showing posts with label graphene. Show all posts

Friday, December 9, 2022

Can the simulated black hole turn into a real black hole?



The simulated 2D black holes can also make quantum stealth possible. 

Researchers are forming simulated black holes by making a hole in the 2D atomic structure. That thing happens by returning the electron or the nucleus of that 2D atom, at minimum energy level to a 3D dimensional form. In that case, the 2D structure loses its ability to interact with that part of it that returned to 3D form, and that means the simulated black hole is 2D-area where is a lower energy level. 

Another version of the simulated black hole could be the system that pulls electrons away from the orbiters of the atom. Or shaper saying the system would pull electrons to a maximum distance from the nucleus of the atom. The thing is that graphene can make that kind of thing possible. There is the possibility that graphene can use to pull electrons to the maximum distance from the core of the atom. That thing can make energy travel to that structure. 

But can 2D holes turn into 3D structures and form black holes? The thing is that if there is forming lots of simulated quantum rings in the material that could be the key to quantum stealth. Quantum stealth means material that will not reflect in any kind of electromagnetic wavelength. 

The idea of the 3D simulated black hole is simple. The quantum ring that forms the 2D simulated black hole would put to rotate like the coin that stands on its corner or upright position rotates on the table. That thing means that the standing ring that rotates upright position like a whisk harvests energy inside that structure. The electromagnetic vacuum inside the rotating quantum circle pulls wave motion inside it. And because the energy impacts the middle of that structure. 

There is forming an energy ray that comes out from that ring. So could the real black hole be similar to way rotating 2D structure that is rotating upright position around the magnetic axle? In that model, the black hole is the 4D object. The energy level of the black hole would be so high that the interaction between the material around it and the black hole itself is happening by gravitation. 

The negative energy model that is created from black holes means that black holes are the quantum pillars of spacetime. The reason why everything drops in the black hole is that the black hole interacts from the future to the point in spacetime where it formed. That thing means that energy flows through that pillar from the past to the point where the black hole cannot get any new "food". When black holes will not get any material anymore they will be vaporized.

The simulated black holes can make a new way to make energy possible. 

The simulated black holes which are holes in 2D atomic structures can harvest energy from their environment. In that model, the energy rings are made around the nanotube and launch in the same direction. When those quantum rings are traveling around that pillar they can form a situation where a small part of the energy is trapped in that structure. The system can put those holes in  2D atoms in a line or row.

Then electrons will shoot through them. So that thing makes it possible to create a new type of quantum accelerator that can rise the speed of particles even closer to the speed of light than the Large Hadron Collider does. 


Image: https://www.azonano.com/article.aspx?ArticleID=5585


https://designandinnovationtales.blogspot.com/


Wednesday, May 4, 2022

The new quantum processors are more and more powerful.

 


Quantum entanglement and photon clouds can be the heart of next-generation quantum microchips. The idea is that there are two graphene layers and between them is the photon cloud. The quantum entanglement will form through that photon cloud in which photons are superpositioned and entangled. That energy bridge transfer energy to the photon cloud. 

That kind of system is making it possible to create more and more powerful computers. The worst problem with the photonic superposition is that it's quite a short-term system. That thing means that the quantum computers must be re-adjust after a short time. 

Quantum memristors are making it possible that the re-adjustment of the quantum computer can be automatized. The system will take the positions that are used in operations from memristors. That allows the quantum computer can continue its operation after re-adjustment. And the superconductors that can let electricity travel in only one direction are making it possible to create the diodes for superconducting microprocessors. 

But if the system makers can create stable superpositions. That thing can make dreams true. Making a stable quantum computer is possible in the case that the superpositions and entanglements are made between extremely high-energy particles. And the most suitable for that purpose is the quantum-size black holes. 

The idea is that electrons are turned into quantum black holes by pumping them with energy. And then the wave-movement is pulled between those black holes. That wave movement is acting as the belt in gear. And it can transfer energy to the photon cloud around it. But the problem is how to make those quantum-size black holes? The stable quantum computer that can operate even for years without breaks is the greatest dream of mankind. 

The problem with solid-state quantum microprocessors is that they require superconducting. The superconducting makes it possible that information keeps its form while it travels through the quantum system. There is lots of work to do before we will replace our laptops by using quantum processors. 

But maybe someday we would equip ourselves by using the quantum computers that are so easy to use as modern binary computers are. The problem is that the systems require very much energy, and they must be re-adjust after a while. 

https://artificialintelligenceandindividuals.blogspot.com/

Sunday, October 13, 2019

The thoughts about extraordinary organisms and structures

The thoughts about extraordinary organisms and structures

Sometimes people have given advise, that we should someday think and write about the most extraordinary case, what we can imagine or expect to find at the universe. In this case, the giant fullerene molecule could cover the entire solar system. And in the strange hypothesis, there could form the aliens on the outer and inner layers of that giant molecule.

When we are talking giant structures, we must see that fullerenes and graphene-layers have not the top size, and in theory entire solar system or planet can be covered by using the graphene. The thing that puts limits is that the graphene needs carbon for manufacturing the extreme large layers.

But when we are thinking about the monoatomic planet, what would consist only carbon atoms, that thing can be internal layers of fullerenes, what has an extremely large number of carbon atoms. The thing of the size of the fullerene molecule has no limit, and that's why some theorists have been said that there could be the extremely large carbon balls on the universe, where would be the entire solar system inside them.

Here people sometimes say, that this kind of thing is impossible, but the thing is that the solar systems of red dwarfs like Gliese 581 are not big. The entire planetary system of that red dwarf is fitting in the trajectory of Mercury, so the theorists have been asked is it possible that the giant fullerene structure would close the entire planetary system inside it. And then there would be the thing that we could call as the hollow planet.

This kind of funny idea is that inside this kind of giant structure could form the lifeforms, and grow trees and other things like that. But the difference between those creatures and so-called conventional way to think is that those creatures would live inside giant natural or artificial Dyson's sphere.

And that would cause the way of think of those hypothetical aliens. In this case, those aliens would see only their central star, what would be the nucleus of their hollow planet, and the planets, what orbits that thing. That thing would make those strange aliens afraid of the dark. And if we would think more extraordinary possibilities the other side of that planet would live organism, what would live in total darkness.

So, in this case, the internal star would warm that giant hollow structure and makes life possible also in the outer layer of the structure. That kind of case might create the giant symbiosis, where the internal organisms would produce food and other things for both of the creatures.

The outer organism would protect the structure against the meteorites and other impacts. In this case, the thing is that the organisms could not live in the environment of each other. The internal organism would freeze in the outer layer of the fullerene, and the outer organisms would burn to ash inside the ball. This kind of thing would be too extraordinary for being true, but those hypotheses are fascinating things to think.

Thursday, July 4, 2019

Giant fullerene molecule would be revolutionizing tool for lightweight submarines and spacecraft.


Picture I


Giant fullerene molecule would be revolutionizing tool for lightweight submarines and spacecraft. 

What if we could someday create the giant fullerene ball, what would have a layer, what thickness is only one atom? If this kind of fullerene molecule is someday able to create it would actually make possible to create the dive balls or spacecraft, what is consisting only one molecule. The problem is that how we could install the hatch on that ball because we don't have any experience about super thick materials, what are produced in this size.

But maybe someday it would be possible by using the method, what I will explain later. A fullerene ball is a magnificent tool and the thing, what makes it so special is that there are no limits for the length of the carbon atom chain. 

Normal fullerene molecule is consisting of about 60-70 carbon atoms, which are forming the ball-shaped molecule. On the internet are paragraphs of C-500 molecules, and maybe even bigger molecules have been made. But because there are no limits for the length of the carbon chain, there is a possibility to create extremely large carbon ball, and in theory, the size of the fullerene molecule could be even meters or kilometers.

If we would create the fullerene-ball, what diameter is about two or three meters, it would revolutionize the science and machine building. The problem in this scenario is that the number of carbon atoms might be the trillions, but maybe someday in the future, we might be able to create the carbon balls by using the ion technology.

In this scenario, the ion cannon would shoot the carbon ion and the magnetic field would stop it in a certain place. In fact, we could cover any form in the world by using ionized carbon. The structure what wanted to be covered would load with the opposite polarity of electricity than the carbon ions, and they would cover the entire layer very easily. 

But the thing is that we would want to make the hollow fullerene ball. That ball would be empty, and it would be one of the most revolutionary things, what history has ever seen. This structure wall would be only the layer of single atoms. If we would have the ball, what has the layer, what is so thick, that there is only one atom in that layer, we would create something awesome.

In fact, we don't have the experience to make that kind of graphene or fullerene balls. But if we would create this atom-thick layer, we would have extremely lightweight and at the same time hard material. There would be huge problems to benefit those structures because installing the hatches in that extreme think structure would be difficult. But if that thing would work, that atom-thick ball will revolutionize technology.

The Picture I: https://upload.wikimedia.org/wikipedia/commons/8/82/Fullerene-C60.png

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