Showing posts with label gamma ray. Show all posts
Showing posts with label gamma ray. Show all posts

Tuesday, September 21, 2021

Material development by using AI. And scanning tunneling microscope.



Artificial intelligence can develop new materials.


The thing that artificial intelligence does best is to collect data from limited environments. The AI can work without sleep and follow the processes non-stop. If artificial intelligence has the right tools. It can follow how the atoms are connecting in a certain type of chemical environment. 

The AI can follow the images that laser and other microscopes send to the computer and adjust the strength and type of radiation or other energy stress. The system can use different wavelengths of radiation like UV or IR radiation. Or it can remove some frequencies of the EM radiation off. Of course, the AI must have the ability to use UV or IR lights and laser microscopes. 

Laser microscopes scan the surface like radars. The UV-lasers are the most accurate optical systems today. 

So, laser-microscopes are actually like lidars (laser radars). The accuracy of the system depends on the wavelength of the laser radiation. 

But if the system uses more high-energetic radiation. That thing would make it possible to make the revolutionary observation tool called X- or gamma-ray laser microscope. The problem is how to make X- and gamma-rays reflect from the surface. 

The X-and gamma-ray microscopes can have extremely high accuracy. The accuracy of the microscopes depends on the wavelength that the system uses. If the scanning laser-microscope uses X- or gamma-rays that system can make ultra-accurate observations about layers. But the problem is that making those systems scan is problematic. There is the possibility to use the side-coming radiation which seeds the elevations. The diagonal X-or gamma-ray source would send the radiation to a gamma-or X-ray camera. 

That thing will make the system see the rising atom-size roughness. But the scanning tunneling microscope can be more ultimate tool than X-or gamma-ray laser scanner.


Image II: The model of scanning tunneling microscope

The Higgs boson could use for making the ultimate scanning tunneling microscope. 


If we would stop the Higgs boson. And put it in the scanning tunneling microscope. That thing could make it possible to observe reactions. What happens between the nucleus of the atom and electron cores. The ability to stop the Higgs boson and hover it in the scanning tunneling microscope would revolutionize science. Theoretically is possible to create that thing by using quantum annealing. 

In that process, the system would stress electrons by using the EM radiation, and maybe that kind of system can raise the energy level of electrons to the level, that they can release the Higgs boson. If that thing can make someday that would give an ability to take images of the individual electrons and maybe it could see quarks. But creating the stopped Higgs boson is difficult.

The accuracy of the scanning tunneling microscope depends on the size of the needle. That needle acts as a small radar. In the most accurate scanning tunneling microscope, the hovering ion or electron is acting like a turntable needle. It hovers between the needle and the surface of the scanned object. That particle follows the form of the layer. The size of that hovering particle determines how accurate that system is. And in the visions is to use stopped Higgs boson that thing allows making observations of the electron cores and quarks. 


()https://scitechdaily.com/new-artificial-intelligence-tool-accelerates-discovery-of-truly-new-materials/


Image I:()https://scitechdaily.com/new-artificial-intelligence-tool-accelerates-discovery-of-truly-new-materials/

Image II:()https://www.wikiwand.com/en/Scanning_tunneling_microscope


()https://visionsoftheaiandfuture.blogspot.com/



Sunday, July 21, 2019

A black hole and Gamma-Ray Bursts

A black hole and Gamma-Ray Bursts

In physics, a black hole is the most exciting particle in the Universe, and it also symbolizes the particle, what is moving and changing its forms all the time. For the human being, the black hole seems dark, but if we would look at it more carefully, we might notice, that near this object is one of the brightest areas in the universe.

But the black hole itself sends radiation, what is invisible for the human eye, but if we would have the right instrument, we would notice that the black hole would send X-ray and gamma-ray frequency radiation, what are the most highly energic radiations in the Universe. When we are thinking about a black hole, we might see something, what is visible in the research centers and another kind of places.

The work in those places seems boring, but the thing is that the people, who are working in those institutes are the brightest minds in human history. Other people would not see the importance of their work, and that's why they would not understand, what people are doing with some kind of knowledge. The persons like Sir Isaac Newton who are making calculations, what are allowing people to calculate geometrical curves gives the ability to make cannons, what shoots with ballistic trajectory.

Could man-made Gamma-Ray Burst, what is created by using atom-size black hole and neutron one day save the Earth? The system would make an electromagnetic black hole, and impact neutrons with it. But would it work in a real situation?

But there are still people, who are not understanding the mean of the derivate. When we are thinking about the persons, who are working with highly energic physics, we must realize, that those people are making really interesting work, and one of the threats, what the Earth can face are GRBs (Gamma-Ray Bursts), what is happening near of the Earth, what means less than 500 light-years.

Those high energy radiation bursts are forming when neutron or black holes are colliding or black hole would suck neutron star. That will cause the gamma-ray jettison, what can destroy our satellites and electronics, and even the entire Earth. There is a possibility that the GRB can be caused by a single neutron, what will fall in the atom size black hole, what is existing only a couple of microseconds.

The protection against GRBs is very difficult, but some physics are thinking about the possibility to create artificial GRB to turn the incoming gamma-ray burst away. The idea is if two rays, what have the same wavelength would impact, those radiation waves would neutralize each other, and even if the man-made GRB is much weaker than natural that thing can make incoming GRB weaker.

The system what would do in this operation is easy to make in theory. The artificial or electromagnetic black hole would be created by using extremely high power energy burst, and then the neutron will shoot against that tiny black hole. That thing would cause artificial GRB, what might someday save our planet, but maybe we should wait for the practical solutions while, until we can create a high enough level of energy.

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