Friday, July 7, 2023

The black hole is unmasked. Telescopes took the very first image of a black hole with its acceleration ring and jet.

ALMA (Atacama Large Millimeter/submillimeter Array), the GLT (Greenland Telescope), and GMVA (Global Millimeter VLBI(Very Long Baseline Interferometry )Array) took the first image of a black hole's acceleration ring (sometimes acceleration or transition disk) and relativistic jet. That thing makes the next step in science.

 Could that image prove the existence of parasitic black holes the thing that could steal material from the bigger black holes? 

There seems to be a small black point in the black hole's jet. So could that thing be another black hole that orbits the supermassive black hole in the M87 galaxy? Also, there are black points near that black hole. So could they be the parasitic black holes that steal material from the supermassive black hole?

The ability to see acceleration structure and relativistic jet means, for the first time researchers can observe interactions of the black hole and its event horizon. The relativistic jet is another very important part of the black hole. Or actually, the black holes and their environment are the entirety. 


"Astronomers have produced an image depicting both the accretion structure and the powerful relativistic jet of the black hole at the center of the Messier 87 galaxy. The image was generated using the Global Millimeter VLBI Array (GMVA), supplemented by the Atacama Large Millimeter/submillimeter Array (ALMA) and the Greenland Telescope (GLT), providing a panoramic view of the black hole and its jet at a new wavelength. The image reveals a larger, thicker ring-like structure, indicating that material falling into the black hole generates an observable emission." (ScitechDaily.com/Black Hole Unmasked: Astronomers Capture First Image of Accretion Ring and Relativistic Jet)

The material falls in the event horizon and then. It should interact with the black hole's nucleus like material interacts with all other fast-rotating objects. The energy fields inside the black hole transport material to its poles. Then those wave movements from in and outside the black hole impact forming a standing wave. 

The problem with energy, that comes from the black hole is that it cannot travel through that standing wave. Another thing is that energy cannot escape from the black hole. So when a black hole interacts with its environment it packs energy inside it. And that energy pushes that standing wave closer and closer to the event horizon. 

In models, the wormholes are forming in those relativistic jets. 

The magnetic field transports particles to the black hole's poles. And that thing causes powerful nuclear reactions just outside the black hole's polar areas. The relativistic jet is the interaction where particles travel to the pole and give maser emission to particles and wave movement that travels in the middle of that structure. 

There is a structure in a relativistic jet that could look like a tornado. So is the origin of the center of that tornado the famous wormhole? In models, the Einstein-rose bridge is forming in the black hole's jet. And could we think that the mysterious tornado-looking structure is the thing that forms around the wormhole? Or is its origin outside the black hole? The fact is that the tornado itself is not a wormhole. The tornado forms around the wormhole. 


https://scitechdaily.com/black-hole-unmasked-astronomers-capture-first-image-of-accretion-ring-and-relativistic-jet/?expand_article=1

Wednesday, July 5, 2023

There is one thing that can beat the AI. And that is quantum computer-based AI.


AI and CRISPR are the ultimate combination.


AI and CRISPR are the ultimate combination. AI-based systems can search DNA and RNA at extremely high speed. So that allows the AI can search for certain genomes or even base pairs. The system can select certain types of people. Like Albert Einstein and some other great scientists then AI can detect. If certain base-pair frequencies connect the genomes of those people. 

When we want to search the genome sequences. That control the advancement of the nervous system, we must only find the DNA sequences that cells don't read very often. The most rarely needed DNA sequences that used most rarely involve the data that control's advancement of the nervous system. 

The information about the position of the base pairs in RNA and DNA makes it possible to make cloned neurons. Those cloned neurons can use to create bio-hybrid microchips. Bio-hybrid microchips are the tools that give computers and robots the same abilities as the real brain. 

The AI-based nanotechnical systems allow to create precise RNA targeting and gene modulation. RNA targeting means that the system can create precisely made artificial RNA molecules. Precise RNA targeting makes it possible to manipulate the genomes as much as possible. 

When biological systems manipulate genomes. They must put the right base pairs in precisely the right points. When the system injects that precisely created artificial RNA into the cell that RNA injection reprogrammes the cell. The cell can turn the RNA into DNA. 

Precise gene modulation can make a revolution in everything. Genetically modified cells can produce medicines and fuel. They can use to create cloned neurons and artificial skin. Genetic engineering allows to transfer of the genomes that make skin cells photosynthetic. And that is one of the most interesting points of view in genetic engineering. The chlorophyll molecule makes skin green. That thing causes the human with green skin can produce vitamin C and sugars in their own body. 



"Researchers have developed RNA-based predictive models that use artificial intelligence to determine the on- and off-target activity of CRISPR tools that target RNA rather than DNA. The model is designed to facilitate precise control of gene expression, which could revolutionize the development of new CRISPR-based therapies". (ScitechDaily.com Artificial Intelligence Meets CRISPR: The Rise of Precision RNA-Targeting and Gene Modulation



The Google quantum computer is 47 years faster than the fastest supercomputer. 


The superiority of the quantum computer is seen in the tests where the Frontier supercomputer took a race with a quantum computer which is faster to crunch numbers. In that test, the top supercomputer tried to solve calculations that would take 47 if the user uses the binary computer. 

The quantum computer with 70 operational qubits crunches the same number series in seconds. This is a thing that we must realize. The problem in quantum systems is error detection. The superiority of quantum computers means that only another quantum computer can check those calculations. 

But when quantum technology comes more common that means more and more people involving the R&D work of quantum computers. And that thing makes it possible to create cheaper and more trusted quantum systems than we ever imagined. 

So what happens if the quantum computer runs the AI? This is the thing that could make AI a more powerful tool than we ever expected. But at this point, we must realize that AI is a tool like some drilling machine. We should remember that when we are using the AI. 

To create answers. The AI uses information that is created or collected by humans. Even the best AI or humans are in trouble if the information that the system is wrong. But if the system can harvest information. That is confirmed and right which makes it superior. 


https://www.sciencealert.com/google-quantum-computer-is-47-years-faster-than-1-supercomputer


https://scitechdaily.com/artificial-intelligence-meets-crispr-the-rise-of-precision-rna-targeting-and-gene-modulation/

Tuesday, July 4, 2023

Einstein was right: time travels 5 times faster now than in the young universe.


Time dilation is one of the issues of science that has only now begun to interest scientists. The reason for that is that time dilation just gives things like computers more time to make their missions. The problem with time dilation is this. Time is the same thing with all observers who are in the same space. Time dilation in the young universe was more powerful than in the modern universe. And the reason for that was the universe was at a higher energy level. 

The energy is time. In a hot universe, the energy that flows out from particles is slower than in a cold universe. Also, all energy impacts in low energy universe cause higher energy differences between the particle and its environment than in a high-energy, hot universe. In time dilation we might say that quantum field press particles stronger in a high-energy environment. And that causes the situation. Where particles cannot release energy with the same speed as they release in a low-energy environment. Whenever a particle releases energy it loses a small part of its mass.

The difference between energy levels in particles and the space around them was lower. And that means energy flow out from particles was slower than in "our" universe".  That energy that flows out from particles is the thing that turns them older. Sooner or later, the energy flows out from particles turning them to wave movement. Energy always travels at a lower energy level. And energy flow continues until those energy levels reach the same level. 

The universe's expansion causes a situation where the difference between energy levels in particles and their environment turns higher.

 And that increases the speed of energy flow. That accelerates the time. We know that the expansion of the universe accelerates. The reason for that is that the gravitational interaction between objects turns weaker when their distance grows. Radiation that travels in a cold universe faces weaker resistance. 



The thing that causes the expansion of the universe is dark energy. Dark energy means that there is too much energy in the universe. 


There is the possibility that dark energy and dark matter have a connection. In some theories dark energy forms when particles are forming standing waves between them, when they send wave movement. Those standing waves could be things that cause energy reflection from them. And those standing waves would form between gluons and quarks. So are the WIMP's so-called standing waves or virtual particles that cause reflection between quarks and gluons. 

Or maybe those virtual particles can form between other particles. Those virtual particles could explain why we cannot see dark matter. In some models, the WIMP is a quantum skyrmion that pulls the Higgs field through it. And that explains the mysterious gravitational effect called dark matter. That skyrmion model also explains dark e nergy. The skyrmion interaction between each other forms a situation that there is too much energy in the universe. 

And the speed of particles is higher in the cold universe than in the young universe, because the resistance of quantum fields is lower. But otherwise, they cannot transfer as much energy in them as they transfer in a high-energy universe because things like kinetic energy form when a particle takes a small part of the quantum field in it. So the energy in a low-energy universe is different than in a high-energy universe. 

That causes an effect where the effect of impacts of those particles causes the bigger effect. The interactions in the universe are complicated things. They are interactions between quantum fields, particles, and wave movement. So when the universe turns colder the effect of impacts rises because the difference between energy levels is higher.  So in a cold, low-energy universe, the impact causes a more powerful effect, than it causes in a hot, high-energy universe. 

https://scitechdaily.com/einstein-vindicated-quasar-clocks-show-universe-was-5x-slower-soon-after-the-big-bang/

Monday, July 3, 2023

Systems that harvest water from the air can make drinking water. But the same tool can remove humidity from the house's internal air.

Harvesting water straight from the air is one of the most important things if people want to survive in deserts. But the same systems can use to make drinking water in normal city areas. Those systems that harvest water from the air can keep the air clean and dry in places like computer centers. 

MIT researchers made the new hydrogel. That hydrogel called lithium chloride can harvest lots of water from the air. And that kind of system can use to make at least drinking water. But those systems also can remove water from the air. And they are useful to keep places like computer centers dry and clean. 

The reason, why there is no rain in the desert is that there are no particles in the air that allows water or vapor to condensate around them. In the first world war, the particles that burning gunpowder sent into the air caused rain that turned all land into mud.




"MIT engineers have synthesized a new superabsorbent hydrogel infused with lithium chloride that can absorb an unprecedented amount of moisture, even in desert-like conditions. This material has the potential for large-scale use in passive water harvesting and improving air conditioning efficiency. (Artist’s concept.)" (ScitechDaily.com/Harvesting Water From Desert Air: MIT’s Revolutionary Superabsorbent Hydrogel)




"MIT engineers have synthesized a superabsorbent material that can soak up a record amount of moisture from the air, even in desert-like conditions. Pictured are the hydrogel discs swollen in water. Credit: Gustav Graeber and Carlos D. Díaz-Marín" (ScitechDaily.com/Harvesting Water From Desert Air: MIT’s Revolutionary Superabsorbent Hydrogel)


The rain was the reason for many catastrophes. As an example, the Passchendaele campaign turned to muddy hell the rain. The artillery and other weapons pumped small particles into the air. Along with pressure waves and changing temperature, that thing caused rain because water condensates around those particles. 

In some visions, the artificial rain would create by burning gunpowder and then cooling that smoke. Then the system will make the artificial occlusion front by using very cold particles. That thing should cause artificial rain around that statue of very cold particles. 

In more limited solutions those particles will release into the chamber. And then air will put to travel through that system. Harvesting water from the air could solve water problems in at least some areas. That kind of system can install in houses. And also in places like spacecraft and submarines, the system can remove water from the air. 

Harvesting water from the air is not a new idea. There is only one needed tank there are particles like small-scale dust, like carbon powder. Then the temperature in that tank will change. And that should form of fog. Also if those particles temperature is low they would pull water on them. Sometimes is planned to harvest water from the air by using two membranes. 

The temperatures in those membranes are different. And that creates the sealing line between them. That point where hot and cold air touching each other forms clouds if the system changes that temperature simultaneously. 


https://scitechdaily.com/harvesting-water-from-desert-air-mits-revolutionary-superabsorbent-hydrogel/?expand_article=1

Sunday, July 2, 2023

The new quantum theory of light-induced matter could revolutionize optical technology.


The new technology can transfer laser rays to acoustic resonance. This technology makes it possible to create super-sonars that see things inside the rooms and other closed places. The idea is that when a laser ray hits the wall, it turns that wall into resonating membrane. 

This laser-based technology can use also in intelligence systems. The underwater system that uses this technology can make fluoroscopy of the internal structure of submarines. The same system can make similar images of aircraft. But this laser-based technology can also use for making extremely sharp loudspeakers. 

The new theory called "the light-induced phase" can make new things for optical technology. The idea is that the thing that should observe is put in the box where is a cavity. Then the laser impulses will send to another side of that box. When those laser impulses hit the wall. The wall starts to send oscillation through that cavity. Then the observation system on another side of that box makes an image of those waves. 



"Schematic illustration of time-resolved spectroscopy for the light-induced phase of molecules proposed based on the new quantum theory. An emission signal is collected in the detector after the laser pulses that excite molecules, yielding multi-dimensional imaging of exciton dynamics in the real-time domain. Credit: Dr. Zhedong Zhang/City University of Hong Kong" (ScitechDaily.com/Novel Quantum Theory of Light-Induced Matter Opens Door to Cutting-Edge Optical Technologies)

The idea is that when the wave impacts something like a molecule or denser object, that object makes a difference in the speed of those waves. The larger-scale systems also can see people in the rooms. In this kind of technology, the laser and sensors are on opposite sides of the house or room. 

Then the laser transmits the pulse to the wall, and then that wall changes the pulse to an energy wave that the sensor on another side can detect. Those sensors can be in drones. In the best models, the drones can have a laser and receiver. And that kind of system can make it possible to see through the walls. The difference between this and laser- or IR-based systems is that the system also sees humans in the room where is some kind of insulator in the walls. 


https://scitechdaily.com/novel-quantum-theory-of-light-induced-matter-opens-door-to-cutting-edge-optical-technologies/

A new era of quantum computing is the photonic processor.

The next step in quantum technology is on the door. The photonic processor is coming. The difference between photonic processors and regular processors is in photonic processors photons transport information. There are three types of photonic processors. 


1) Half photonic processors. 


In those systems nano-size lasers transport information between processors' internal components. So only the processor's wires are replaced by laser rays. The photovoltaic cells transform information between photonic and electric elements. 


2) All photonic processors. 


In those processors, all information transportation happens in the photonic mode. These kinds of systems are more powerful than electric-based systems. They will not heat so easily, as electric-based systems. Photonic processors are also immune to electromagnetic fields. But the problem is how to control those photons.

In the wildest vision, the 2D structure in photonic processors is a network of superpositioned and entangled particles. That thing could make portable quantum computers possible. The problem is how to control the system. Full control of the system requires that operators can remove all non-controlled space and artifacts from the system. 


3) Half-biological photonic processors. 


In that model, the living neurons in neurochips are connected with microchips. In every single axon is a connected microchip. And data travels between neurons in that neurochip in photonic mode. That's why every single of those microchips is equipped with lasers. Laser- or photonic base data transmission is not so vulnerable to electromagnetic fields as electric communication. 

The idea of the biochip that uses a combination of microchips and living neurons is not new. The biochips are planned to use to fix neural damage and train cloned neurons for futuristic neural transplants. 

"A new system developed by researchers at the University of Rochester allows them to conduct quantum simulations in a synthetic space that mimics the physical world by controlling the frequency, or color, of quantum entangled photons as time elapses. Credit: University of Rochester illustration / Michael Osadciw" (ScitechDaily.com/Pioneering Quantum Simulations on Photonic Chips: A New Era in Quantum Computing)


Full control in quantum systems is the most important thing for successfull quantum computing. 


The requirement for successful quantum computing is that. The operators can perfectly control the quantum system. Without that ability, quantum computers are unable to operate. Or they are unable to make trusted calculations. 

The major problem with Quantum computers is how they read information from the qubits. When a photon hits material it releases its energy. The key element in that problem is to aim for the photon that carries information precise right point. If some other photon or EM field affects the photon while it transports information that causes corruption. 

The new theory or model about the material called "light-induced phrase" can help to model the quantum interactions between photons and material. And modeling the photonic interaction in the material is important for quantum computers. 


https://scitechdaily.com/novel-quantum-theory-of-light-induced-matter-opens-door-to-cutting-edge-optical-technologies/?expand_article=1


https://scitechdaily.com/pioneering-quantum-simulations-on-photonic-chips-a-new-era-in-quantum-computing/

Nanoherz gravitational waves uncover the secrets of the universe.


Why wavelength of wave movement is important? All particles send wave movement that wavelength is the same as their size. Another question is why is the frequency of wave movement important? Frequency determines how often a particle sends wave movement. And that gives information about the size of the particle. 

If a particle sends wave movement with a short wavelength very often. That means the particle is very small. Wave movement or large-scale waves are energy fields that are leaving particle groups. In this model, particles send wave movement. While they travel as the front in space. The wave movement is traveling the power field. 

When wave movement travels through other wave movement or power field that has the same wavelength and frequency. The recessive power field impacts energy to a higher power energy field. Things like electric arcs are standing waves. And we can think that things like black holes are somehow similar effects to electric arcs. But the frequency and wavelength of that energy is different. 

In regular versions of electric arcs, electromagnetism forms those standing waves. And we could call those things like black holes gravitational versions of electric arcs. Or gravitational waves should be able to make standing waves. The gravitational waves are the things that give new types of information about the universe, and its supermassive objects. 



"Chinese scientists has recently found key evidence for the existence of nanohertz gravitational waves, marking a new era in nanoHertz gravitational research. Credit: Image by CAS New Media Lab". (ScitechDaily.com/Probing the Universe’s Secrets: Key Evidence for NanoHertz Gravitational Waves)



"FAST helps find key evidence for the existence of nanohertz gravitational waves with its high sensitivity. Credit: Image by NAOC of CAS", (ScitechDaily.com/Probing the Universe’s Secrets: Key Evidence for NanoHertz Gravitational Waves)

"The Chinese Pulsar Timing Array (CPTA) collaboration has identified evidence of nanohertz gravitational waves using the Five-hundred-meter Aperture Spherical Radio Telescope (FAST). Despite their shorter data set, their high sensitivity yielded results comparable to other international groups. This discovery is pivotal in understanding the Universe’s structure and behavior of supermassive black holes, paving the way for future exploration of gravitational waves". (ScitechDaily.com/Probing the Universe’s Secrets: Key Evidence for NanoHertz Gravitational Waves)



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The singularity and how it interacts with gravitational waves?


In the middle of a black hole is the material called the singularity. That material is the combination or entirety of time and space. There is no space where energy can go. Gravitation pulls superstrings to the flat. The information that comes outside the event horizon will pack around the singularity. 

Sooner or later, the energy level of that wave movement turns higher than the energy level of the wave movement. That comes out from the event horizon.  That wave movement will start to push the standing gravitational waves outside the center of the black hole. 

Whenever material and wave movement increases or decreases. That thing causes changes in energy stability in the black hole. When that stability changes. The position of the standing wave inside the event horizon changes. And that causes changes in radiation levels that can come out from the black holes. So that thing is the wave motion that is seen as gravitational waves. 

In models, the singularity is extremely slight. So it sends straight wave movement that affects the outcoming wave movement. The reason why this wave movement affects all other wave movements is that it's so dense. 


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There are models that inside the singularity of the black holes is a small space where superstrings are not connected. There is no gravitation at that point. That space is smaller than a quark. But the gravitational waves are traveling through it. And then that thing makes the black hole's nucleus or singularity oscillate and sends wave movement against the information that travels in the event horizon. 

The surprising and wonderful thing in this model is the reflecting radiation. That comes out from the singularity. The special form of singularity is that it cannot take radiation or wave movement to any place. There is no free space in that form of material. And gravitation pulls even superstrings flat. So the black hole packs wave movement around that complicated structure of the entirety of material, time, and space.  

When wave movement is packed around the singularity. Its energy level rises. The radiation impacts the wave movement that comes out from the event horizon. Energy always travels to a lower energy level. And sooner or later the energy level around singularity turns so high that it can push radiation through the event horizon. 


https://scitechdaily.com/probing-the-universes-secrets-key-evidence-for-nanohertz-gravitational-waves/?expand_article=1

Rogue planets and cosmic explosions are a threat to solar systems.


The mysterious planet that should not exist. 


Astronomers found a mysterious planet, that should not exist. That Jupiter-type planet Halla survived its sun, Baekdu’s explosion into a red giant. The star's radiation should destroy that planet immediately. And that thing means that Halla could be the planet that formed destroyed planets' cosmic remnants. There is the possibility that after a star exploded as a supernova. The cosmic remnant forms a new solar system around the zombie star. 

Near zombie stars could find many planets. That orbit white dwarfs, neutron stars, or even black holes. But the reason why some planets can survive even from the supernova explosion is sometimes distance. If the star is very far away from its planet. And the planet's magnetosphere is strong enough. That could make it possible. That the interplanetary shockwave will not reach the planet with so high power that this shockwave could turn it into cosmic dust.  


A supernova explosion can turn even a large planet into a rogue planet that travels in the universe. 


In some models, the planet or moon is just in line with some other, bigger planet. that takes the shockwave's energy into it. The shockwave destroys a bigger planet. And the smaller ones and their moons could survive in one piece. 

Those cases mean that shockwave pushes those planets out from their trajectory and turns them into rogue planets. That is one thing that we must realize when we make models of the planet's survivability in supernova explosions. 


The Halla is evidence that supernovas can push planets out from their trajectories. And then those rogue planets start to travel around space. If that kind of planet will come to another solar system it can destroy the entire system. The gravitation effect of the Jupiter-size planet is so strong, that it pulls all planets out from their trajectory. 



"The Jupiter-like planet Halla survived its sun Baekdu’s expansion into a red giant, a process that should have engulfed it, according to astronomers from the University of Hawaii. The surprising survival prompts theories about planetary evolution, including potential binary star origins or Halla being a newly formed “second generation” planet. Credit: W. M. Keck Observatory/Adam Makarenko" (ScitechDaily.com/Life After Death: Astronomers Discover a Mysterious Planet That Shouldn’t Exist)




"Artist’s impression of the blast wave from a supernova colliding with the molecular cloud filament where the Sun is forming. Credit: NAOJ" (ScitechDaily.com/Cosmic Shield: How Our Solar System Survived a Supernova)


Around every solar system is a plasma shield. The solar wind or particle flow away from the sun is protecting us from most of the particles that are coming out from other solar systems. The plasma shield and Kuiper belt. Along with the cosmic dust pulls lots of incoming energy in them. In some models, the red dwarfs are a dangerous place for living creatures, because they have so small plasma and dust fields around them. 

Those small particle-ion balls cannot absorb so much cosmic radiation like particle impulses from supernovas before those impulses impact planets. That is closer to their star. If things like FRBs are hitting to red dwarf that thing raises its energy level, causing a massive eruption. That thing could sterilize those planets in less than a second. 

Supernovas can form solar systems. But they can be fatal for the young solar systems where planets are just forming. The cosmic shockwave can make conditions where planets and stars are forming, but that shockwave. And especially FRBs can destroy protoplanets before they can form stable planetary formation. Or if supernova eruption happens close enough it can push planets out from their tracks. 


https://scitechdaily.com/life-after-death-astronomers-discover-a-mysterious-planet-that-shouldnt-exist/


https://scitechdaily.com/cosmic-shield-how-our-solar-system-survived-a-supernova/?expand_article=1

Thursday, June 29, 2023

The quadruple of gravitational lensed supernovas unlocks the mystery of dark matter.


How can some materials interact only through gravitation? 


Dark matter, or otherways saying: unknown gravitational interaction is one the biggest mystery in the universe. That gravitational interaction is the send dominating effect in the universe. In some visions, the WIMP particles are the thing that forms dark matter. But in other models, the dark matter is extremely short-term quasiparticles or virtual particles. That source is in the most high-energy reactions. 

To uncover that mystery, researchers use supernovas with gravitational lensing for unlocking the mystery of that gravitational effect. In those observations, researchers hope that the shockwave of a supernova explosion can interact with still hypothetical WIMPs (Weakly Interacting Massive Particles).


 "Zooming in to supernova Zwicky: starting from a small portion of the Palomar ZTF camera, one out of 64 “quadrants”, each one containing tens of thousands of stars and galaxies, the zoom-in takes us to detailed explorations carried out with the larger and sharper VLT and Keck telescopes in Chile and Hawai’i respectively. On the best resolved Keck images, the four nearly identical “copies” of supernova Zwicky can be seen. The multiple images arise due to the warping of space caused by a foreground galaxy, also seen in the center and approximately halfway between the site of the supernova explosion and Earth. Credit: J. Johansson" (ScitechDaily.com/Quadruple Take: Unlocking Dark Matter Mysteries With Multiply-Imaged Gravitationally Lensed Supernova)



Those particles should form that gravitational interaction with an unknown source. Researchers believe that WIMPs are particles that size or essence is so different than visible material. WIMPs cannot interact with visible material in other ways than through gravitation. The interesting thing is how some materials can have only gravitational interaction. 

In some models, the WIMP is a particle where some kind of energy ray or superstring travels through that particle. That energy channel takes energy away from the WIMP through its poles or spins the axle. That thing means that when energy travels in WIMPs quantum field, that channel pulls it in. And then that energy pike aims that energy away from the pole. So that makes WIMP hard to detect. That is a different type of energy transfer in WIMP than in regular material. 

When energy hits regular material it interacts with the quantum field of those particles. Energy always travels in the direction where is a lower energy level. So material or particle takes energy in its quantum field until the quantum field's energy level is higher than its environment. Then the particle sends photons or wave movement. The quantum field takes energy straight from the outside. 

But it also transmits wave movement in the particle, where energy reflects from the middle of the quantum field. And the energy returns to the quantum field. If there is some kind of quantum string in the middle of the particle that transports energy in one direction there is the possibility that the particle is observable only if the observer looks straight to its poles. 

https://scitechdaily.com/quadruple-take-unlocking-dark-matter-mysteries-with-multiply-imaged-gravitationally-lensed-supernova/


Wednesday, June 28, 2023

Dark energy is strange interaction that pushes the universe larger.


The zero spin means that the Higgs boson will turn flat immediately. That thing sends waves in Higgs field. So could that thing be the reaction that forms dark energy? When the Higgs boson collapses or divides that thing causes a situation that a Higgs field (or some other electromagnetic field) will fill that point. And that thing causes interaction. 

So could dark energy form when the Higgs field interacts with another electromagnetic field. There is the possibility that the Higgs field is a so-called base-field that pulls energy out from other EM fields or four fundamental interaction's transportation particles. That thing causes flow and resonance. So maybe this interaction is the thing that causes dark energy.  





Higgs boson's virtual spin can be zero. The lifetime of that particle is so short that it doesn't have time to begin the spin. 


Higgs boson spin is 0. That means it cannot interact straight with other particles. Interaction with other particles requires wave movement between particles. If a particle has spin, it sends wave movement around it. Spinning particle acts like a whisk in water. 

When it spins, the interaction sends a wave movement from the particle. That interaction causes resonance with another similar particle. The existence of Higgs boson is extremely short. That means. It's possible that the Higgs boson would just have no time to spin or measurement tools cannot detect so short-time reactions. 

It's theoretically possible. That two Higgs bosons can turn superposition. If there is some kind of energy. That impacts the Higgs boson-pair sideways and connects them. But making that thing in the real world is very difficult because Higgs boson collapses before photons can travel between them. 

Higgs boson forms in quark-gluon plasma that causes waves in the Higgs field. And then the particle accelerator must keep that energy level long enough that the superposition can form. But in black holes and supernovas could be energy level. That is high enough, that Higgs boson has time to make spin. If Higgs boson spins. That thing makes the revolution in physics. 

But there is the possibility that the energy level that allows Higgs boson spin exists only in black holes. And if that spin of Higgs boson happens only in black holes. There is no way to get information about that thing from outside the event horizon. 


Image: ScitechDaily


A black hole and how it interacts with its environment?


The lifecycle of the black hole is one of the most interesting things in the world. The upper image could introduce the black hole's lifecycle and ability to exchange information with its environment. When a black hole forms after a supernova explosion, it will close information behind the event horizon. 

When a black hole vaporizes it releases information. That is stored in it during its birth. So the lifecycle of a black hole is like a tube where information travels. That tube is the event horizon. And when a black hole evaporates or turns to wave movement it releases that information. 

In the beginning, the supernova forms a bubble that acts like a vacuum bomb. The extremely high energy level pushes all other quantum fields away from the point. Where the star has been before. When those quantum fields return and try to fill that quantum vacuum, they press the Higgs field to the structure that looks like a hill. 



The lower image could tell how the gravity and Higgs field are forming a hill-looking structure in the 2D field model. The problem with black hole interaction is that all quantum fields can interact only with similar quantum fields. All quantum fields or fundamental interactions have similar wave-particle duality. All four fundamental interactions (strong, and weak nuclear force, electromagnetism, and probably gravitation)  have transportation particles and wave-form. 

Gravitation transportation particle graviton is not confirmed yet. Those interactions have different wavelengths. And that means they interact very easily with other similar fundamental interactions. But things like electromagnetism have only weak interactions with other interactions like wean nuclear force. 



And that means there is some missing field that forms black holes. Gravitation is like a structure that interacts with that unknown field and pumps energy to it. The outcoming energy keeps the energy hill in one piece and pumps energy to that pillar. If there is no outcoming energy that pillar collapses immediately. 

The black hole is like a bubble. Interactions between its halo and environment form the situation where the holo pumps energy waves into the black hole. The energy that travels in the singularity forms a standing wave at some point in the black hole. And when the energy level of that standing wave turns strong enough it can push energy out from the black hole. 

That energy forms the famous gravitational waves. The point where that energy reflects is speculative. The thing is that when energy travels out from the black hole, that stops the energy pump in the black hole. And those gravitational waves are evidence that energy travels out from the black hole and that energy is the thing that destroys the black hole. 

The Higgs field is a similar electromagnetic field to other electromagnetic fields. That field should oscillate similar way as other wave movements. But the problem is how to measure that frequency. The only known interaction with other fields and the Higgs field is the Higgs boson, which is an extremely short-term particle. But there is the possibility that in a black hole energy level is high enough that in that extreme object can form the static Higgs boson. 

There is the possibility that the black hole is sending other wave frequencies, than gravitation. And maybe those yet unidentified frequencies are the wave movement in the Higgs field. And could the mythical Hawking's radiation be the wave movement in Higgs field? 

Black holes send gravitational waves. That means that black holes are changing the wavelength of other quantum fields. So that thing acts like the amplifier. When energy impulses from outside are falling through the event horizon they continue their journey to the black hole's core, where they reflect and form gravitational waves. The point where that reflection happens is in the middle of singularity or on its shell.  

There is the possibility that the black hole's singularity is not perfectly slight. The quantum fields are so close to that point where time, space, and material are forming entirety that interactions between fundamental forces are possible. But the problem is that those interactions have so different wavelengths than the Higgs field that they cannot pump energy in it, and that causes the Higgs field leaks out from the black hole. 

The first moon outside our solar system may be found.

“This illustration shows the CD-35 2722 system. A star about half the Sun’s mass is orbited by a brown dwarf. 37 times more massive than Jup...