Showing posts with label scanning microscopes. Show all posts
Showing posts with label scanning microscopes. Show all posts

Saturday, October 12, 2019

What if we can affect the nucleus of atoms by using radiation, what is targeted only in the nucleus particles?

What if we can affect the nucleus of atoms by using radiation, what is targeted only in the nucleus particles?

The thing, that makes supernova so special is the huge energy level, what it makes. When the star detonates the releasing energy is so huge, that the entire planetary system, what orbits it would terminate, but that is the case, what most people know. The enormous level of energy has also affected the atoms and the thing is that this radiation would pass the electron layers, and then affect straight to the nucleus, which would pull the electron cores to the nucleus of an atom.

In this case, the radiation, what would travel inside the electron layers would increase the energy level of the particles of atom asymmetrically, which causes that the electrons drop in the nucleus. This process starts the formation of the neutrons. 

This thing causes that all material is turning to neutrons. And if there is enough mass that process causes that even the neurons cannot resist gravity, and the object crushes itself to one point, which is called a singularity or black hole. The name of the object is given because even the light cannot escape from it. 

But is there something between neutron stars and black holes? That thing what is the gap form between a neutron star and black holes are sometimes called "grey holes". But the official name of that object is called quark star (1), which is size about 1 to 5 kilometers, and the gravity on the surface of that object is so huge, that only photons can escape from it. So that is the thing in the line between the neutron star and black holes. The quarks can resist more powerful gravity fields than the neutrons, but the fact is that sooner or later those objects are turning to black holes if they would get more material for increasing the mass. 

The same way the white dwarf would turn to a neutron star. The mass of that object would increase, and then it would turn to neutron star in stages, where the inner parts of the white dwarf would turn to neutron mass, and then the rest of the star would collapse because of the gravity of internal structures of the white dwarf. But this advantage would need also the material that drops to the surface of a white dwarf and increases the mass of that object. 

What if we could create neutrons without a nuclear reactor?

Neutrons can create the same kind of things, what atoms make. And the reason for that is neutron is a polaric particle. So they can put together like atoms in molecules. That makes possible to create "neutron steel" what is the material, where the atoms are replaced by neutrons. And that thing can revolutionize material research in the world. 

When we are thinking about the possibility to adjust the size of the object, we would face the thing, that if we would want to influence the nucleus of the atom, we must send the energy radiation straight through the electron layer. And by adjusting the size of the electron layers, we would allow adjusting the size of the object. If we would increase the energy level at the same time with the electron layer and the nucleus of the atom, that thing would not affect. 

But even if we would not have a chance to create that thing, and miniaturize object by pumping the radiation in the atom, this thing would make possible to create the new type of materials. If we are thinking the tool, what is known as scanning tunnel microscope, that thing, what is the nanotechnical stylus, would send the electric ray straight in the nucleus of an atom. And that makes possible to create artificial neutrons or neutrons without a nuclear reactor. 

That kind of neutrons can be used as making one of the strongest structures, that mankind has ever imagined. Neutron itself has one value, what people normally don't mention. It is the polaric particle, which means that it has a north and south pole. This thing makes possible to connect neutrons by using the magnetic forces of the different poles in this kind of action. And that makes possible to create the neutron graphene or neutron structure, where the atoms are replaced by neutrons. This would be the material of tomorrow.  

(1)

Tuesday, October 1, 2019

Another writing about qubits

Another writing about qubits

This writing could also be named as the "three electron problem", but the thing is that we have thought the qubit as the molecule, which would touch the frames of the gate. And as I have written before, the number of touches would mean a certain level or value of qubit. This is one way to think about the problem. But there is a couple of other ways to closing this kind of problem.

One of them is just using the modified tunnel microscope for making the qubit. The thing is that the scanning tunnel microscope is the stylus, which would hang ion or electron on the surface of the metering particle. So if we would create the transmitter, what would use multiple stylus or antenna, what would send multiple electrons at the same time, and that system would create the necessary value for the qubit.

And those antennas would target the gate, which might have very many frames. That allows the system to give qubit as many values, what the creator of the system wants. But of course, we would need to make very much work with this kind of thing, before the first fully functioning quantum computer would be possible to create.

But let's continue to think about the qubits. The thing is that the problem of the qubits can be solved in other ways, which might seem very different than using the normal cable, where those bits would travel in lines, which would make those computers more effective than any existing computer. And one of those possibilities for solving that kind of problem can be mentioned here.

The solution for creating the qubit could be the magnetic version of the bubble, which is filled with balls. In this case, the ball would be filled with electrons or ions. The value of the qubit would define by the electrodes, where the ions or electrons will touch.

So, in this case, the magnets would hover those particles, and the ball would be covered by electrodes, what would create the form, what looks like little bit longitudes of the map ball. This kind of system would look like miniaturized- or nano-sized map ball, and the use of nanotechnology or nano-sized mosaic on the structure of that ball would make this thing true.

This would be the so-called "stable solution" for qubits. The movement of those particles would be extremely short. And the problem is how to adjust the track of each particle. Of course, adjusting the track is not enough, and those particles must be controlled during their journey to electrodes.

The purpose of this kind of action would deny the possibility, that all of those electrons or particles are touching the same electrode. But even if the system would become operational there is much work left in the operating systems and programs. And at the beginning, the quantum computer would be the hybrid solution, where another traditional computer would be used to code commands to the quantum computer, which could return the answer thought the regular computer.

If this is the mode of the system, that thing would be used to solve extremely long calculations. That hybrid solution would be slower than a pure quantum computer. The thing would operate that when the calculation would input to the quantum computer by using the regular system, that calculation is away from the hands of the operator until the quantum system will return it. And that kind of system is unstable if the normal rules of computing would consider quantum computers.

Six clicks separate people from each other.

“A long-observed social phenomenon suggests that people across the globe are separated by surprisingly few connections. Credit: Stock” (Scit...