Monday, July 24, 2023

If we can create a high-enough energy field with very high density we could make a system that can interact with gravitation.


If gravitation is quantum entanglement between hypothetical graviton particles the antigravitation is the situation where the participants of that hypothetical quantum entanglement are in the same energy level. So the thing that forms antigravitation is a standing gravitational wave between the object and the ground. 

The observations that cocoons of supernovas can form gravitational waves are refreshing ideas that may be someday. In the future. We can create synthetic gravitational waves. Maybe annihilation or annihilation-powered lasers can form required energy levels where density and energy levels are high enough. 

That they can interact with gravitation. The system should form standing gravitational waves that make the gravitational reflection from it to the hovering object and the ground. The idea is that if gravitational waves can form a standing wave that thing reflects gravitational radiation between the object and the ground. The situation is similar when quantum entanglement breaks when the energy level on both sides of it is the same. 

At the beginning of this text, I must say that if the model of gravitation as the quantum entanglement between gravitons is true we can say that antigravitation is also true. The thing that can cause the antigravitation could be the quantum entanglements between the gravitons the hypothetical gravitational transportation particles. 





If those gravitons have the same energy level. That thing makes them repel each other. So if the quantum entanglement between gravitons is the thing that we call gravitation the rules of quantum entanglement are suitable for that situation. 

Quantum entanglement requires that the participants of it are in different energy levels. And they are identical. If participants of quantum entanglement are in the same energy level that thing forms a standing wave between them. That standing wave forms a virtual particle that causes reflection in quantum entanglement. And that reflection pushes particles away from each other. 

The reason for that is that quantum entanglement cannot form if the energy level of the particles is the same. That thing causes particles in quantum entanglements to start to repel each other. So what if the gravitons in both participants in the gravitational system will reach the same energy level? That thing should cause the repel that we can call antigravitation between those participants of the gravitational quantum system. 

The fall of the bubble is the reason why black holes are forming. And the thing that makes a gravitational effect around a black hole could be the gravitational tornado that pulls wave movement and material out from the event horizon. When that gravitational or quantum tornado pulls the material to the poles of the singularity it causes electromagnetic low pressure. Then the outside field tries to fill that effect and takes all other particles with it. 


https://scitechdaily.com/dying-stars-cocoons-a-new-unexpected-source-of-gravitational-waves/?expand_article=1

Black holes can form only when supernovas are forming falling WARP-bubble.


Forming of a black hole. 


When a supernova explodes it forms a bubble. The shockwave of the supernova has so high energy level and density are so high, that this shockwave can push gravitational waves away inside it. The fall of the bubble is the reason why black holes are forming. 

And the thing that makes a gravitational effect around a black hole could be the gravitational tornado that pulls wave movement and material out from the event horizon. When that gravitational or quantum tornado pulls the material to the poles of the singularity it causes electromagnetic low pressure. Then the outside field tries to fill that effect and takes all other particles with it. 

The birth of black holes is an extreme situation. The supernova explosion pushes all other quantum fields away from the point where the star that ran out of fuel was. The black hole forms the WARP bubble. The shockwave that traveled across the universe has such a high density and energy level that it can interact with gravitational waves.

The power of a supernova explosion is so high that it also pushes gravitational fields away from the point where that explosion happens. When we think like that, we must realize that the falling material and wave movement are forming the black hole. The black hole forms when the singularity turns all radiation that touches it into a quantum tornado. That quantum tornado unites all electromagnetic fields, including gravitation.

And that quantum tornado pushes electromagnetic fields out from the black hole through its poles. If that model is true, all black holes have wormholes connected to them. And the drop in black hole mass can be explained. That quantum tornado that we can call a "gravitational tornado" takes material from the black hole.



But this model requires that those electromagnetic fields be pushed away. And we can say that gravitation is one version of EM radiation.


The new observations also show that the cocoons of supernovae also form gravitational waves, or maybe those cocoons do not form gravitational waves. Maybe they just push them or give them more energy. The fact that those jets can interact with gravitation is what causes the model to suggest that maybe the supernova can also whip the gravitational field away.

When that WARP bubble, or bubble of nothingness, falls, the energy impacts the middle of that bubble. That pushes the material and energy in that bubble into a form called a singularity. Falling energy forms material. Where all quantum fields are in their entirety. When that bubble falls, it pumps energy into that singularity.

This thing makes the sign spin at a very high speed. The spin of a singularity makes gravitational tornadoes on its poles. Those gravitational tornadoes are pushing material away from the black hole. And the gravitational waves are forming in the waves of that tornado. We can see that a gravitational tornado is in the jet of a black hole.


But when we think that energy travels to lower energy levels, we can ask which way gravitation travels in the system of two black holes.


Gravitation is one version of energy and wave movement. If we think that the gravitational effect is like quantum entanglement between two particles. We can say that energy travels from the higher-energy particle in that system to the lower-energy particle. That thing is called the system's attempt to reach energy balance. The length of that quantum entanglement is the radius of the gravitational effect.

If that thing that energy travels in lower energy particle happens in quantum entanglement. The lower energy particle pulls the higher energy particle into it because quantum entanglement turns shorter when it releases its energy. The ability to maintain quantum entanglement determines the gravitational radius between higher and lower energy gravitons.

When a lower-energy particle transfers energy into it, it decreases energy in quantum entanglements. That will pull higher-energy particles toward the lower-energy particles. And gravitation is one version of energy. So we should say that gravitation travels from more massive to less massive participants in the system. That means the gravitational interaction is opposite to all other forces. When gravitation travels to a less massive object, that thing makes the larger object send energy to the less massive object.

When energy transfers to a lower-energy object, that means the quantum entanglement loses part of its energy. That means that the quantum energy pulls the objects closer to each other. In the case of quantum gravitation, other radiation types cover the gravitational quantum entanglement. The graviton is such a small particle that researchers cannot see it. The gravitational waves are the reason for the large number of gravitons. Gravitation is the force that affects entireties. The gravitons send so short-wave radiation that only a large number of them can form a visible long-range effect that pulls objects together. 


Saturday, July 22, 2023

Coherent X-rays are revolutionary tools for communication and research.

What is connecting the planet Mercury with X-ray lasers?


The ability to create low-energy coherent X-rays is a revolution in communication and observation technology.

The ability to manipulate wave movement at the quantum level is one of the most fundamental things in physics. The ability to make highly accurate, coherent X-rays makes it possible to create new types of X-ray microscopes with extremely high accuracy. Those X-ray microscopes can do fundamental things in research. And those X-rays can be used as the next-generation laser communication systems. X-ray-based laser communication is one of the most secure communication systems we can imagine.


Ring-shaped X-ray structures can make it possible to create a new type of laser-communication system with X-ray frequency.


ESA/JAXA's BepiColombos probe discovered X-ray auroras at the poles of the planet Mercury. The reason that small planet has those X-ray auroras is the electron rain from the Sun. This phenomenon can be used to create new types of X-ray lasers that have high enough accuracy to be used as communication tools.

In those systems, the X-ray will pass through the ring-shaped cathode. The X-ray system makes the X-ray ring for that cathode, and the X-ray ring will input energy to the X-ray beam that travels through that ring-shaped cathode. The idea is this: Because X-rays have the same frequency, the ring-shaped X-ray formation pumps energy to the X-ray that travels through that ring.



"Artist’s representation of the ESA/JAXA BepiColombo mission flying through precipitating electrons that can trigger X-ray auroras on the surface of Mercury. Credit: Thibaut Roger/Europlanet" (ScitechDaily.com/BepiColombo’s First Mercury Flyby Unmasks Electron Rain As Trigger for X-Ray Auroras)


A magnetar, a neutron star with an intense magnetic field, can be the key even to gravitational lasers or coherent gravitational waves. 




"Astrophysicist Dong Lai theorizes that a quantum electrodynamics (QED) effect called “photon metamorphosis” accounts for unexpected observations of X-ray polarization from a magnetar, a neutron star with an intense magnetic field. Lai’s theory suggests X-ray photons passing through the magnetar’s magnetized atmosphere can temporarily transform into pairs of “virtual” electrons and positrons, leading to differing polarizations for low and high-energy X-rays". (ScitechDaily.com/Quantum Metamorphosis: Unveiling the Puzzling Phenomenon of Magnetar X-Rays)

There is a small possibility that the energy level around magnetars, neutron stars with extremely powerful magnetic fields, can reach a high enough level that it can interact with gravitons. If that interaction happens in the magnetic field around magnetar, that makes it possible to create synthetic, coherent gravitational waves called "gravitational lasers". 

The high-power magnetic fields around magnetars are causing an effect called "photon metamorphosis". In that effect, the magnetic field forms the "virtual electrons" that turn into electrons and positrons. But there is the possibility that part of the X-rays around the magnetars form when electrons impact protons. 

That effect means the X-ray polarization around magnetars The high-power magnetic fields can create situations where anions and ions start to travel around magnets. And then those particles impact each other or the shell of that neutron star. When those anions and ions react with each other at high speed, that thing forms a fusion reaction around the magnetar.

The source of the X-rays can be in the fusion itself. Or the reason for that is electrons that impact protons or some other ions. Those ions are sending X-rays to their environment. And there is a standing X-ray in the middle of the magnets. That phenomenon can also be used to create synthetic, coherent X-ray impulses. In some visions, the system uses photons to push electrons against cathodes.

The structure of the magnetic field is forming a standing wave in the middle of it. That thing forms the powerful maser effect that sends radiation to the poles of the structure. The high-power radiation that forms in the magnetic field sends radiation into the middle of it. And then that radiation can come out of the poles of magnets. The effect causes a situation where photons are pushing electrons away. Somewhere around the magnetars, a similar effect is forming as in cathode tubes.

And what if some of the gravitational waves that those magnets send are forming in their extremely strong magnetic field? There is a possibility that the density of energy in that area is high enough that it can pump energy into gravitons. If that is true, there is a possibility that a similar effect can someday form a synthetic and coherent gravitational laser. Would that thing be successful? That thing depends on the ability to create magnetic fields with high enough power.

https://anewtonsapple.blogspot.com/2023/07/the-dying-stars-impact-waves-are.html

https://scitechdaily.com/bepicolombos-first-mercury-flyby-unmasks-electron-rain-as-trigger-for-x-ray-auroras/

https://scitechdaily.com/dying-stars-cocoons-a-new-unexpected-source-of-gravitational-waves/

https://scitechdaily.com/quantum-metamorphosis-unveiling-the-puzzling-phenomenon-of-magnetar-x-rays/


The dying star's impact waves are an unexpected source of gravitational waves.

Is this the first evidence of the existence of gravitons? The model of this phenomenon is that the energy impact from dying stars has a high enough energy level and density that it can pump energy straight to gravitons. And when the energy pump ends, those gravitons deliver their extra energy as waves called gravitational waves.

Dying star cocoons or impact waves are unexpected sources of gravitational waves. When jets escape from the supernovas, they create cocoons of the stellar material impact waves. Those cocoons are made of extremely dense material that travels just after extremely high-power radiation. The front side of those is very hot plasma, and it pushes material at the front of it before it breaks down and delivers its energy.

Finding gravitational waves in those cocoons is a surprise. There have been models that show that if somewhere there are impact waves with a high enough energy level and density, that thing can cause interaction with hypothetical gravitons. And the material cocoons of supernovae can have that needed energy level and density so that they can interact with or push energy toward those hypothetical gravitons.



"As a jet escapes from a collapsed star, it punches into a cocoon of stellar debris. Credit: Ore Gottlieb/CIERA/Northwestern University". (ScitechDaily.com/Dying Stars’ Cocoons: A New Unexpected Source of Gravitational Waves)


The hypothetical graviton, or transmitter particle of gravitation, is nevertheless a particle. It acts like all other particles. But the problem with gravitons is that they are so small that their radiation is hard to detect. When energy stress impacts gravitons, energy transfer to those particles continues until the particle's energy level is higher than its environment. And when energy stress ends, particles deliver their energy. This means that particles attempt to reach the same energy level as their environment.

So if the impact wave that comes out of the dying star has high enough energy and material density, that impact wave can pump energy into gravitons. And when the impact waves turn colder or their energy level decreases, those gravitons deliver their extra energy in the form of radiation, whose wavelength is the same as the diameter of the particle that delivers it.

The problem with the gravitons is that they are very small. In the case of extremely small particles, there is no room for energy in the particle itself. When energy impacts a small particle, it reflects that energy out of it immediately. And then that energy forms the impact wave or bubble around that particle. This quantum bubble makes the wave movement travel over the particle. And this thing denies the reflection from those particles.

So to make the reflection from extremely small particles, the system must make an impact wave that has a high enough density and a high enough energy level that it can break the quantum bubble around those extremely small particles and make the reflection from the particle itself. So is this evidence of gravitons?

https://scitechdaily.com/dying-stars-cocoons-a-new-unexpected-source-of-gravitational-waves/?expand_article=1

The cloned memory cells and the BCI is the ultimate combination for fixing brain damage.


Cloned neurons, where the data is transferred, make it possible to fix even large-area neural damages.


When brain cells are dying, the memory blocks in them are gone. That means we lose those neurons. But new technology makes it possible to create even cloned neurons that can replace damaged brain areas. Researchers cloned muscle cells from stem cells. The thing is that there is the possibility of cloning all other cells from cloned stem cells.

The PCR (Polymerase Chain Reaction) method makes it possible to make stem cell clones by combining the DNA of other cells. The idea is that the PCR system makes copies of the DNA that is isolated from the desired cells. And then the system simply replaces the DNA from the nucleus of some other cells.


"Implanted electrodes stream recorded data to a pocket-sized device worn by a patient. The data are then wirelessly transferred to a tablet and then uploaded to the cloud via a HIPAA-compliant server. Credit: Image courtesy of Starr lab, UCSF" (ScitechDaily.com/Researchers Wirelessly Stream Human Brain Activity During Normal Life Activities). The user can connect this system to the cell phone. . 



The BCI can store the EEG, and then that brain's electromagnetic phenomenon can transfer to cloned memory cells.


The BCI (Brain computer interface) makes it possible to copy things that a person sees and feels to databases on a computer's hard disks. The same BCI systems can be used to control computers by using neuro-implanted microchips. Those microchips can make it possible to make a copy of the person's mind. And then the researchers can use that EEG to analyze what the person does during the day.

There is the possibility that those implants make it possible to copy thoughts to the computer, and then operators can see from the screen what the person sees and hears. This system can also turn the EEG into written text. There is a possibility that, in the future, a system can copy that EEG into cloned memory cells. And then the operators can transfer those memory cells into their brains. Because cloned cells are made by using the receiver's cells, there is no problem with tissue rejection.


Knocking on the graves


Researchers may be able to retrieve the information from the brain after death. A couple of years ago, researchers returned functions to the brain after a person had been dead for about ten hours. That ability is one of the most frightening and interesting things in the world. Connecting that ability with the BCI (Brain computer interface) makes it possible to see what happened before a person died. That thing is one of the biggest things that researchers have ever created. The system can transfer those memories into the cloned memory neurons. That thing makes it possible to remove large tumors from brain tissue.



https://scitechdaily.com/scientists-restore-partial-brain-function-hours-after-death/


https://scitechdaily.com/potentially-unlimited-supply-scientists-grow-meat-from-immortal-stem-cells/


https://scitechdaily.com/researchers-wirelessly-stream-human-brain-activity-during-normal-life-activities/

Lasers and satellites are the ultimate tools for research.


NASA's GEDI (Global Ecosystem Dynamics Investigation) spaceborne laser is one of the most interesting tools for high-accuracy, complex emission research. The GPS can warn about earthquakes hours before they are visible. But lasers can make that system more effective. The laser reflector's positions, which can be determined with very high accuracy, can be observed by geostationary laser satellites. And that system can offer the same accuracy as lasers. The quantum radar of a radio wave is as thin as an atom or electron. Can replenish the optical system on cloudy days.

GEDI (Global Ecosystem Dynamics Investigation) is one of the new tools that researchers have for studying large-scale, remote ecosystems. The highly accurate laser systems can observe the gas exchange on the top of the leaves. And if the satellite makes the laser beam larger, the system can observe large areas.

"NASA’s space laser, GEDI, has revolutionized our understanding of rainforests, revealing a simpler structure with a peak leaf concentration at 15 meters. These insights could significantly impact our knowledge of biodiversity, species’ adaptation to climate change, and the carbon storage capacity of forests". (ScitechDaily.com/Into the Unknown: NASA’s GEDI Space Laser Provides Answers to Rainforest Canopy Mystery)


"A comprehensive analysis of GPS time-series data suggests a precursory phase of fault slip occurs two hours before large earthquakes. However, the current inability of monitoring tools to detect such slips at the scale of individual earthquakes remains a significant challenge for practical earthquake prediction". (ScitechDaily.com/Early Warning: GPS Data Could Detect Large Earthquakes Hours Before They Happen)

The main purpose of GEDI is to observe and calculate the canopy of the rainforests. The GEDI can use 3D scanning technology to observe the shape and other things about the canopy of the forest. The system can also detect chemicals that travel through trees and search for things like pollution. But GEDI can also detect the pheromones that wood and animals use in communication.

There is a possibility that GEDI can also detect the sounds of rainforests. The system acts like all other laser microphones to detect oscillations caused by resonance. And that tells a lot of things about animals and other species in the rainforests.

The GEDI system is one of the next-generation tools for making observations about landscapes that are far from the human environment. The purpose of GEDI is to study things like complex ecosystems and how species interact with each other by sending chemical signals. The system could analyze those chemical marks in the air.

And modern technology allows for the analysis of complex pheromone molecules. The laser rays, along with high-accuracy telescopes, and plasma spectrometers, give extremely detailed information about the gas and other chemical exchanges in the rainforests. Orbital laser satellites can see the emissions of individual cars. And they can be used in multiple missions.

The GPS can turn cell phones into earthquake detectors. The idea of that system is that those cell phones can be put in certain positions on Earth. By using remote control, the operators can update and observe things using the satellite-based monitoring system.

Laser satellites can be used to find tsunamis. The satellites can see changes in the density of water. And then the laser system can see if there is movement in some kind of denser water area that is not visible from the air or ships.

The laser system can connect with GPS-based earthquake warning systems. In those systems, the GPS that is in large areas measures the changes in the dynamics of the earth's shell. The system detects the location of those GPS systems, and if there are any changes, that satellite system tells it to center. That allows the system to predict earthquakes hours before people see them.

There is only one problem. Those GPS systems require energy, and another thing is that somebody might try to steal the GPS transmitters. The passive system uses laser mirrors that are precisely placed in certain positions by using GPS assistance. The laser satellite can locate those laser reflectors and see how their position changes.


https://scitechdaily.com/early-warning-gps-data-could-detect-large-earthquakes-hours-before-they-happen/


https://scitechdaily.com/into-the-unknown-nasas-gedi-space-laser-provides-answers-to-rainforest-canopy-mystery/?expand_article=1

The white dwarf called "Janus" has two faces: one helium and one hydrogen.


The white dwarf with helium and hydrogen sides is one of the most interesting findings in the universe. The thing is that there is something that makes hydrogen and oxygen into two different sides for that white dwarf. The phenomenon that gives Janus the dwarf two faces of helium and hydrogen is quite similar to that that gives Saturn's moon Iapetus its dark and bright sides.

But on that white dwarf, the phenomenon is more powerful than on Iapetus. There is a possibility that some kind of cosmic beam affects Janus. The idea is that when the powerful hydrogen or hydrogen ion (proton) beam hits one side of the white dwarf, that impact can turn the hydrogen into helium in strong fusion. This is one thing that causes problems on Earth.

When anions and ions are traveling into Earth's magnetosphere, there is the possibility that Earth's magnetic field drives those plus and minus pole particles together and forms spontaneous fusion at the point where plasma impulses are forming in Earth's magnetic field. The thing that makes two different atomic sides for Janus the dwarf is making one thing become to my mind.

The question is: Can a star turn into a brain? Or can stars form a structure that acts like a quantum computer? If we want to make a quantum computer that emulates the human brain, we need three components. Those three components can be helium, hydrogen, and carbon.

"For the first time, astronomers have discovered a white dwarf with two different faces, one of hydrogen and the other of helium. The discovery raises new theories about white dwarf evolution and the role of magnetic fields in shaping celestial bodies. Credit: K. Miller, Caltech/IPAC" (ScitechDaily.com/Astronomers “Blown Away” by Weird Two-Faced Star)


Iapetus

The Janus can be a model of the most advanced quantum computer we can imagine.


So, I don't try to claim that this white dwarf is intelligent. But the structure of that thing is suitable to operate as a model for a quantum computer that can act like a human brain. The idea is that there is a fullerene or carbon structure.

And then the hydrogen and helium are in different places on that carbon layer. The idea is that the large brain is made of helium and hydrogen. And carbon's structure acts like the cerebellum. That kind of system is one of the most interesting versions of quantum computers. Information can be driven into that system in the form of radio waves.

If that structure that we might call "mini Janus" is on Earth, that thing requires extremely low temperatures. Information change between those structures happens by using superpositions that are made through electrons. But if the size of the supercomputer could be the same as Janus, that system would be easier to make. The strong gravitation locks particles in the desired directions on the white dwarf.

The reason why we cannot make that system in space is that there is so much material needed that this thing will not work. But maybe in the future, by transmitting energy to some planet or dwarf planet, it will be possible to create such a strong gravitational or EM field that this kind of supersystem can be created in the distant future.

https://scitechdaily.com/astronomers-blown-away-by-weird-two-faced-star/


https://en.wikipedia.org/wiki/Iapetus_(moon)

Gluons and the strong nuclear interaction.

When we think about energy flow from the strongest to the weakest. Free energy. That causes an atom’s decay. It is formed. Or. Released in t...