Wednesday, January 21, 2026
Quantum matter and quantum engines.
Saturday, January 3, 2026
Sterile neutrino is ruled out.
"A high-precision neutrino experiment has delivered a decisive result that challenges a long-standing explanation for mysterious signals seen in earlier studies. By carefully dissecting how neutrinos transform as they travel, researchers have narrowed the range of viable theories and set the stage for a new phase of investigation. Credit: Stock" (ScitechDaily, A 30-Year Physics Mystery Takes a Sharp Turn: This Bizarre Particle Doesn’t Actually Exist)
A sterile neutrino means a neutrino that formed straight from electromagnetic fields. If that particle exists, that means it formed in the sensor itself. The thing. That can form. The neutrino. Directly from wave movement. Are the Schwinger effect and the wave-particle duality. Even if a sterile neutrino exists, it will not remain sterile. For. A long time. And that means it's almost impossible to confirm those sterile neutrinos.
Neutrino is the second generation of fermions. Or, sharper saying, neutrinos are members of the lepton family. Leptons are electrons, muons, and tauons. Those particles form in a weak interaction with leptons. We know three types of neutrons. Tau neutrino, electron neutrino and muon neutrino. Those particles are transformations to electrons, tau particles, and muons.
Or, they form in reactions from muons, taus, and electrons. This means that we don’t actually know neutrinos. This means that. We don’t know. The neutrino that formed in the Schwinger effect. We don’t know. The neutrino, that form. It is direct. In. The wave-particle duality. Neutrinos are formed in the interaction when the weak nuclear force interacts with leptons.
Sterile neutrino is ruled out, at least for a while. For being sterile, the neutrino must form in a sensor. Otherwise, if a neutrino travels only a short distance, it turns dirty. Neutrino takes quantum fields with it. This means that the neutrino turns dirty. We can call those quantum fields. As “quantum plague”.
And. Even if a neutrino stays in a static position, it will turn dirty because the “quantum wind” makes it messy. A sterile neutrino cannot exist in our universe, or its existence remains for such a short time. That means we cannot see it. So even if a neutrino forms in the fusion reactor. It turns dirty before it reaches the sensor. The problem with sterile neutrino hunting is that nobody has seen a sterile neutrino. Reseachers see those dirty neutrinos quite often.
Quantum fields touch those neutrinos. And those fields are left as a plague on those neutrinos that neutrino sensors detect. But the thing that makes it almost impossible to detect and confirm the sterile neutrino is that. The system must know what kind of fields are touched on those neutrinos. So, the system calculates the thickness of that quantum plague.
If reseachers want to find sterile neutrinos, they must know how much energy, or how thick the quantum layer is through which neutrinos are collected. While their journey to Earth. But. For making those calculations, the system must know the precise point of the Big Bang, or where the neutrinos formed. Then the system must know all quantum fields between the point where the neutrino formed. And then it can calculate the quantum field that is on the neutrino. But as we know, this kind of mission is impossible. Another thing that rules out the existence of the sterile neutrino is the Pauli exclusion principle.
“In quantum mechanics, the Pauli exclusion principle (German: Pauli-Ausschlussprinzip) states that two or more identical particles with half-integer spins (i.e. fermions) cannot simultaneously occupy the same quantum state within a system that obeys the laws of quantum mechanics. This principle was formulated by Austrian physicist Wolfgang Pauli in 1925 for electrons, and later extended to all fermions with his spin–statistics theorem of 1940.” (Wikipedia, Pauli exclusion principle).
If. We expand this model to the universe’s scale. That means that because a neutrino is a fermion, there can be only one sterile neutrino in the entire universe. The Pauli exclusion principle means that there are no two fully identical neutrinos in the universe. So, if the sterile neutrino exists, that means there cannot be two of them. All sterile neutrinos. Are identical. That situation is impossible. If. We want to follow the Pauli exclusion principle.
https://scitechdaily.com/a-30-year-physics-mystery-takes-a-sharp-turn-this-bizarre-particle-doesnt-actually-exist/
https://en.wikipedia.org/wiki/Neutrino
https://en.wikipedia.org/wiki/Pauli_exclusion_principle
https://en.wikipedia.org/wiki/Standard_Model
Friday, December 26, 2025
Sterile neutrinos, tachyons, and axions. Can they explain why matter exists?
"Inner view of the large electrostatic spectrometer of the Karlsruhe Tritium Neutrino Experiment (KATRIN), the world’s most accurate neutrino scale. Credit: Michael Zacher/KIT, KATRIN collaboration" (ScitechDaily, Physicists Tighten the Net Around the Elusive Sterile Neutrino)
Reseachers closing the elusive sterile neutrino. The sterile neutrino is a very hard-to-detect particle. The particle itself will be so small, or so different than other neutrinos, that it will not exist for a long time. The sterile neutrino means that there are no quantum fields that left their marks on that neutrino. When a neutrino travels through quantum fields, those fields leave their marks on it. This means the neutrino turns dirty. And this is one of the biggest problems with physics. Neutrino is the next-generation tool for reseachers to make observations. It’s possible that the sensor can remove fields from the shell of the neutrino.
But the sensor must know. What the neutrino is and what. Is the field. To determine the field that the sensor must detect and analyze, it must know the original values of the neutrino. If. The system knows the neutrino’s original values. Like. Its original energy level. Another possibility is that the sterile neutrino can prove the existence of a wormhole. If a neutrino can travel through the wormhole, it will not take quantum fields on its shell. And that means the neutrino can stay sterile.
The standard model of physics. There is sometimes a marked graviton. The graviton. It is a hypothetical gravitation wave transporter. The graviton should exist. And sometimes some reseachers suggest that the graviton is the quantum-scale black hole. Another suggestion is that the graviton is the same thing as the axion. If an axion spins very fast, it rolls quantum fields on its shell. And that can explain dark matter, the mysterious gravitational effect in the universe. That can also explain dark energy. When the universe’s energy level turns lower, the axion releases its energy.
Neutrino beams can also create wormholes in the electromagnetic fields. The neutrino beam can push those fields away their way. And then. This thing. It can make interstellar travel closer to reality. The idea is that the neutrino beam. It makes a hole in quantum fields. And then the energy that comes. Behind pushes particles or craft into the tunnel.
A neutrino is a fermion type. Its position is in leptons. So. That means Neutrino should be able to make similar bonds and interactions with other leptons. But there is no evidence that neutrinos form any shell to matter. The weak interaction creates neutrinos. Those neutrinos are:
1) electron neutrino, νe
2) muon neutrino, νμ
3) tau neutrino, ντ
"Physicists have long suspected that elusive particles known as axions could help explain the hidden matter shaping the universe. While the idea even made its way into popular culture, solving the problem proved more difficult than fiction suggested. Credit: Shutterstock. A new theoretical study suggests fusion reactors could do more than generate energy, they might also produce particles linked to dark matter." (ScitechDaily, Dark Matter Breakthrough: Physicists Crack “Big Bang Theory” Puzzle)
There is a suggestion that dark matter particles that impact each other can form energy. Those impacting dark matter particles. Or. An energy impulse from that particle can form. A hole in the quantum fields. That means energy impulse from axions makes the vacuum or cosmic bubble. Then that bubble collapses. And. The effect is similar to a vacuum bomb. When a bubble or void collapses, it sends an energy impulse.
To the outside. This means dark matter can play a big role in the Big Bang. But there is one big “but”. That very big “but” means that matter and dark matter should form at different moments. If dark matter formed before visible matter, that means the dark matter interaction could trigger the Big Bang.
But then. To the mysterious dark matter particles. Called Axions.
Nobody seen an axion yet. But it's possible. Axions are the mythical dark matter particles. There is something that denies its interactions with other particles. And maybe. The neutrino or sterile neutrino can open the path to the axions. If we think of the possibility that neutrino spin turns extremely fast, and its speed is almost the speed of light. That can press the neutrino into the form of a small “worm”. This means that an axion could be a particle. That is like a small wire or a small worm. The idea is that the high speed, along with the fast spin, turns into a roll. The axion may be like a drill. That travels through all energy fields.
This allows the particle tunnel itself to pass through other particles. So, the axion could be like a traveling tornado. In some models, the mythical tachyon. The theoretical faster-than-light particle forms the photon when its speed decreases below the speed of light.
We cannot see tachyon. While. It travels faster than light. When the tachyon slows its speed below the speed of light, it must transfer its energy somewhere. This means tachyon should form the ring-shaped energy impulse.
This means the photon would be the quantum shockwave, like a light boom. That is similar to a sonic boom. It is in the molecular world. Then the tachyon that decreases its speed sends another particle. Like. A sterile neutrino or some other fermion or boson. Another thing is that. Maybe. Fusion reactors can tell reseachers something about things. Like. The speed of light and neutrinos. Fusion reactors could form neutrinos just like fusion reactions form neutrinos in the Sun. Neutrinos form because of the high-energy wave-particle duality. Fusion sends wave movement through standing waves.
And in that interaction, form a neutrino. When neutrinos travel out from the star, they form quantum dots. During that journey, the neutrino binds energy on its shell. That makes lower energy points to the star. Energy starts to fall into those energy tunnels, and that means. If. This model is right, neutrinos play a big role in stars. It might deny the form of the standing waves that detonate a star. So. If we continue this reasoning chain. Mythical. Axions can explain why matter exists. The axion can make those quantum dots into the smallest parts of matter. When. An axion travels through a particle. It creates a lower energy point that pulls the particle into its form.
https://scitechdaily.com/dark-matter-breakthrough-physicists-crack-big-bang-theory-puzzle/
https://scitechdaily.com/physicists-tighten-the-net-around-the-elusive-sterile-neutrino/
https://en.wikipedia.org/wiki/Axion
https://en.wikipedia.org/wiki/Neutrino
https://en.wikipedia.org/wiki/Standard_Model
https://en.wikipedia.org/wiki/Tachyon
Types of neutrinos:
https://en.wikipedia.org/wiki/Electron_neutrino
https://en.wikipedia.org/wiki/Muon_neutrino
https://en.wikipedia.org/wiki/Tau_neutrino
Thursday, November 27, 2025
The Einstein and tachyon. An ultimate test.
"Visualization of the Higgs field. Credit: CERN. The geometry of space, the setting in which physical laws operate, may hold clues to some of the biggest unanswered questions in fundamental physics. The underlying structure of spacetime itself could be the foundation for every interaction observed in nature." (ScitechDaily, Beyond Einstein: Could Our Universe Have Seven Hidden Dimensions?
The speed of light is the cosmic speed limit. But it's possible that the faster-than-light particles called tachyons can escape from black holes. Those particles can form only in black holes. They cannot be visible because they tunnel through other particles. The name of those hypothetical particles is tachyon. And the problem is that. Those tachyons are not tachyons anymore. When their speed decreases below the speed of light. When a tachyon decreases its speed. It should send radiation. Similar to Cherenkov radiation. Cherenkov radiation forms. When an electron. Or some other charged hits water. At a speed. That is a higher particle than the speed of light. That particle sends its extra energy as a blue light flash, or shockwave. Neutrino detectors also use this effect.
“While the speed of light in vacuum is a universal constant (c = 299,792,458 m/s), the speed in a material may be significantly less, as it is perceived to be slowed by the medium. For example, in water it is only 0.75c. Matter can accelerate to a velocity higher than this (although still less than c, the speed of light in vacuum) during nuclear reactions and in particle accelerators. Cherenkov radiation results when a charged particle, most commonly an electron, travels through a dielectric medium with a speed greater than light's speed in that medium.”(Wikipedia, Cherenkov Radiation)
Einstein in ultimate tests. And there is a goal to prove. That there can be some kind of exceptions for things like the speed of light in extremely ultimate energy levels. The Michelson-Morley experiment, which measured the speed of light, plays a vital role in Einstein’s theory of Special relativity. And that experiment still stands. The only thing that requires checking is that the speed of light depends on the environment. That means. The speed of light is a cosmic constant that depends on the medium or the quantum field. Which travels in a certain direction.
Things like black holes make quantum fields travel into them. And that means it's possible to cross the speed of light. In cases where the quantum field travels faster than the speed of light. When a black hole’s gravity field pulls energy and quantum fields inside its event horizon. The point. Where escape velocity reaches the speed of light. That quantum field pulls even photons with it. That causes the black hole paradox.
When a field travels faster than the speed of light, that raises a question. About how fast the photon travels. The speed of a particle is relative to its environment. The quantum field pulls a particle into a black hole like a river. And that means. The speed of that particle relative to the quantum field that carries it is the same. As the speed of the quantum field. That means. The speed of the particle. Is zero.
The gravity field forms. When a fast-spinning object binds energy. To it. That object turns those quantum fields into kinetic energy. There is a possibility. There is some kind of mass center. In the middle of the photon. If that thing is right. It's possible that there is a quantum-sized black hole in the middle of the photon. So, could those quantum black holes be gravitons, the hypothetical gravitational transporter particles? Or could tachyon be the same as graviton? The hypothetical faster-than-light particle leaves. The “low-pressure” or a lower-energy cone behind it. This lower-energy cone is the quantum version of the sonic cone.
And if it exists, that explains why gravitation acts as it does. The tachyon itself tunnels through a particle. And that lower-energy cone pulls the particle. To the gravity center. That is the source of tachyons. That model explains tachyons. As the particles that form in quantum-size black holes are in every particle. That has mass. So a photon can be the energy disk of those black holes.
That’s why nothing can escape from a black hole. There is no known particle. that can escape from a black hole. That requires speed. That is faster than the speed of light. And that fights against the laws of physics. If a black hole sends some other types of radiation. than gravitational waves, the best candidate for that radiation transporter will be the hypothetical Tachyon. That is a theoretical faster-than-light particle.
Could a light barrier really exist? Similar to a sound barrier? In theory, the tachyon can be a faster-than-light particle. The tachyon forms in the black hole. That means a black hole is a four-dimensional object. And in some models, there are possibly seven hidden dimensions in our universe. That means the black hole is the tensor. And the higher dimensions are things. that are hiding in the black holes. So, tachyon forms. In the higher dimensions.
The thing about tachyons. Those are those extremely high-energy particles. Send their extra energy. As radiation. That radiation is similar to Cherenkov radiation. When a tachyon travels at a speed. That is higher than the speed of light. It tunnels through the particles. And when we see that interaction, tachyon’s speed slows lower than the speed of light. And its existence as a tachyon ends.
We can think of the black hole. It could be like a waterfall. Where energy travels straight from the fourth dimension into the second dimension. That means the energy travels at a very high speed through the third dimension. Time dilation means. At the speed of light, time stops. And when the escape velocity rises higher than the speed of light, time starts to travel backward in the black hole.
Image 2) The structure of a photon gives a hint that there can be some kind of mass center in a photon. Or the photon can be an energy ring. That is the hypothetical tachyon leaves behind it. In those models, tachyons cannot form in the third dimension. Those particles require energy levels. Those are so high. Only the conditions in black holes can raise energy levels high enough. That tachyons can form.
Image 3) The Sonic barrier
Image 4) The photon. Packet of quantum light.
Image 5) "Cherenkov radiation glowing in the core of the Advanced Test Reactor at Idaho National Laboratory. Cherenkov radiation is an electromagnetic radiation emitted when a charged particle (such as an electron) passes through a dielectric medium (such as distilled water) at a speed greater than the phase velocity (speed of propagation of a wavefront in a medium) of light in that medium. A classic example of Cherenkov radiation is the characteristic blue glow of an underwater nuclear reactor. Its cause is similar to the cause of a sonic boom, the sharp sound heard when faster-than-sound movement occurs. The phenomenon is named after Soviet physicist Pavel Cherenkov.” (Wikipedia, Cherenkov Radiation)
Image 6) A century after Michelson and Morley’s historic zero result helped launch Einstein’s special relativity, physicists are still searching for tiny cracks in one of its core principles: Lorentz invariance. Conflicts between quantum theory and general relativity have inspired the possibility of slight violations detectable only at extreme energies or cosmic distances. Credit: Stock" (ScitechDaily, Einstein Tested Again: New Gamma-Ray Study Pushes Physics to Its Limits)
The arrow of time means that time travels backward in the black hole. Near the black hole. Is the point. Where time travels forward at a very high speed. The arrow of time means that when a particle. Or time travels forward. That thing pushes particles near it backward. So when time moves backward. That means it transports energy from the past to the future. The past is at a higher energy level. And that means the shortcut through time brings energy, maybe straight from the Big Bang, into the universe.
In this model. Dark energy and hypothetical Hawking radiation are the same thing. And. A hypothetical tachyon particle is the transporter of that wave movement. If tachyon really exists. That particle will be extremely high-energy. It will be very small. And it can also tunnel itself through other particles. This means that when we think. If the elementary particles are the whisk-shaped structures of the superstrings.
The tachyon can push those superstrings. Away from its route. That causes another question. Can a gravitational wave form when a tachyon cloud travels through the universe? If tachyon really travels through the quantum fields, it leaves the quantum version of sonic boom, or “light boom,” behind it. That light boom acts like a quantum low-pressure. This means that those “light booms” pull particles in the direction. There those tachyons come. in that model. Photon is the field. That forms in a similar way. The vapor ring forms in cases. The aircraft crosses the speed of light. Those things are seen in images 3 and 4.
But then back to the higher dimensions. Those dimensions are invisible to us. The second dimension is the state of matter; the matter includes only height and width. If those particles really exist, they cannot reflect. The wave movement just travels past or over those particles. The third dimension means that the particle has width, height, and depth. The fourth dimension has a dimension. In time. The time that moves forward is the fourth, and the time that travels backward is the fifth dimension.
Those dimensions are very complicated structures. “The researchers propose that the universe may include unseen dimensions shaped into complex seven-dimensional forms called G2-manifolds. These structures were typically viewed as fixed, but Pincak and his team treat them as evolving systems that change over time through a process known as the G2–Ricci flow, which alters their internal geometry as it progresses.” (ScitechDaily, Beyond Einstein: Could Our Universe Have Seven Hidden Dimensions?)
We could explain the 2D material. As the ultimate minimum energy state. And the black hole could be like the waterfall that allows energy to travel straight from the fourth and higher dimensions to the second dimension. That gives ultimate power. To that energy. This means that the arrow of time affects black holes. When time travels backward, it sends matter around it to the future.
It’s possible that gravitation is not even a single type of interaction. Fast fast-moving. An energy field that travels through another energy field can have an effect similar to that of the wind. That traveling field. That is, a lower energy level pulls energy into it. If that energy field forms a tornado-shaped structure, it can roll energy or quantum fields from around it. This means that. Those fields also bind energy and turn it into kinetic form.
https://scitechdaily.com/einstein-tested-again-new-gamma-ray-study-pushes-physics-to-its-limits/
https://scitechdaily.com/beyond-einstein-could-our-universe-have-seven-hidden-dimensions/
https://scitechdaily.com/quantum-leap-scientists-reveal-the-shape-of-a-single-photon-for-the-first-time/
https://en.wikipedia.org/wiki/Cherenkov_radiation
https://en.wikipedia.org/wiki/Graviton
https://en.wikipedia.org/wiki/Higgs_mechanism
https://en.wikipedia.org/wiki/Neutrino
https://en.wikipedia.org/wiki/Sound_barrier
https://en.wikipedia.org/wiki/Speed_of_light
https://en.wikipedia.org/wiki/Tachyon
Friday, July 25, 2025
The universe, its particles, and quantum fields.
"New research suggests that collapsing stars may serve as natural laboratories to uncover hidden neutrino behavior, with potential implications for the birth of black holes and neutron stars. Credit: Shutterstock" (ScitechDaily, The Universe’s Most Elusive Particles Might Be Talking to Themselves)
Wave-particle duality (WPD) means that particles can turn into energy and vice versa: energy or energy fields can turn into particles. WPD means that particles are only the denser points in the quantum fields. The fact is that the particles require quantum fields for their existence. Without those quantum fields, there is no resistance that can push particles into their form. And that means if we take quantum fields out, energy flows away from particles, ripping them into pieces. And that turns particles into wave movement or quantum fields. Dark energy can form in some sub-particle structures that are too small to detect.
But anyway, if a particle goes out from the universe, it turns into a wave immediately. And that makes it hard to detect anything outside the universe. The temperature outside the universe is unknown, but it's lower than 3K radiation or Planck radiation. It might be lower than the thermal minimum in the universe. And if that energy level is lower than the thermal minimum, 0K or -273.15C. That means energy can travel only out of the universe. That makes it impossible to observe things outside the universe.
The most elusive particles in the universe can play an important role in neutron star and black hole formation.
Neutrinos are almost massless particles. Their interaction with other particles is very weak. And that makes them travel through planets without touching anything. But today, researchers noticed a new interaction between neutrinos. That means a neutrino can interact with other neutrinos. And that makes those elusive particles more interesting than they were before. When a neutrino travels through objects, it takes some part of the quantum fields with it. That means those quantum fields transfer energy to the neutrino when it travels through them.
Can the gravitational version of the Meissner effect be possible? In that gravitational Meissner effect, gravitational waves act like electromagnetic fields in the Meissner effect. And can this kind of effect also explain why neutrino interaction is so weak? The case where EM-fields travel past the particle that turns them denser than that thing allows the particle tunnel itself through walls? So is the spin of the neutrino so fast that a similar effect to the Meissner effect can make it almost weightless. If a neutrino hovers in an EM-pocket, it's hard to detect.
"Diagram of the Meissner effect. Magnetic field lines, represented as arrows, are excluded from a superconductor when it is below its critical temperature." (Wikipedia, Meissner-effect) Tc=Temperature Critical. Could there be a similar critical level to gravity?
In the theoretical model, the gravitational waves in extremely dense, fast-spinning particles can act in the same way as electromagnetic fields act in the so-called Meissner effect. That theoretical phenomenon can be called the gravitational Meissner effect. Or the antigravity.
If the gravitational Meissner effect exists, that thing can make gravitational levitation possible. The idea is that the fast-spinning particle can turn into a quantum-sized black hole. And that thing makes it possible that gravitational waves travel past the particle. The gravitational Meisner effect can explain some details about black holes. Radiation that travels past those objects closes them inside the radiation bag. So the thing that makes black holes special is that regular and quantum gravity are connected in them. The fast-spinning, extremely dense objects can create a situation where they don't let gravitational waves travel through them. That thing can make the gravitational Meissner effect possible.
When a neutrino beam travels through the star, that thing can act like airflow that travels through rooms. The neutrino beam takes energy with it. And that decreases the temperature in the star's core. That thing can cause a very dangerous situation when the energy level decreases in the star’s core and the route of the neutrinos. When the energy level decreases, that means the energy that can resist gravity turns lower. And that neutrino beam can cause situations that start to explode sooner than it should. When the energy level decreases, that means the star's outer layers start to fall to its core, and that can cause extreme peaks in the energy production.
Can a neutrino be the thing that glues quantum and regular gravity together? The idea in quantum gravity is that some kind of radiation or small particles that travel through the particles turns them cold. When something takes energy away from an object, outgoing energy tries to replace that energy. That movement continues until energy levels inside and outside the object are at the same level. In some models, the spin of particles binds quantum fields to them.
That means particles turned those fields into kinetic energy. The energy that the particle binds pulls other particles to that thing. So, theoretically, a quantum-sized black hole requires that the spin of the particle turns so high.
When large and dense groups of particles spin, they bind lots of energy into them. Without that spin, that particle’s existence ends. The question is, where do particles put the energy that they store? The outside quantum field pushes structure into its form. If that quantum field turns too weak relative to the structure, the energy that comes out from the structure destroys it. The question is, could the extremely fast-spinning quantum black hole emit gravitational radiation past it? That causes an interesting question about the gravitational Meissner effect's existence. If that Meissner effect's gravitational version exists, that means the gravitational levitation can turn into reality.
https://bigthink.com/starts-with-a-bang/quantum-fields-quantum-particles/
https://scitechdaily.com/the-universes-most-elusive-particles-might-be-talking-to-themselves/
https://en.wikipedia.org/wiki/Meissner_effect
https://en.wikipedia.org/wiki/Wave%E2%80%93particle_duality
Thursday, May 29, 2025
A giant black hole sent a neutrino beam without a flash of visible light.
"This artist’s impression shows a ‘cosmic joust’ – a galactic merger in which the galaxy on the right hosts a quasar at its core. This quasar is powered by a supermassive black hole swallowing up material around it and emitting a powerful cone of radiation, piercing the other galaxy like a lance. As this radiation interacts with the galaxy on the left, it disrupts the clouds of gas and dust within, leaving behind only the smallest and densest regions. These regions are likely rendered incapable of star formation after the process. Credit: ESO/M. Kornmesser" (ScitechDaily, Quasar-Powered Galaxy Attack Revealed in Stunning Detail)
Gamma-rays and galactic-scale quantum annealing.
There are expectations that those neutrinos formed when high-energy gamma rays hit helium atoms nuclei. That thing can tell something about how neutrinos form. There is the possibility that gamma rays push those helium nuclei quantum fields. And then they can form the "droplet" or the bag from that quantum field. That "bag" is the neutrino that travels through the universe.
If a neutrino's form is very flexible that means there is the possibility that the neutrino puts the fields around them to travel past them with minimum contact or minimum energy transfer. But that is only a hypothesis. The thing that makes neutrinos almost massless is the minimum energy transfer between them and their environment.
The energy that comes from distant supernovae and quasars can create gamma rays. When we think about things. Like a cosmic gamma-ray background, there is a possibility that things like black holes in the Milky Way disturb that image. The energy that forms in the Milky Way causes annealing in our galaxy dust and gas.
"Schematic diagram of how neutrinos are produced by the decay of neutrons produced by photolysis of nuclei. Credit: Yasuda et al." (ScitechDaily, The Squid Galaxy’s Black Hole Just Unleashed a Neutrino Storm Without the Light)
"Hubble image of the spiral galaxy NGC 1068. Credit: NASA / ESA / A. van der Hoeven" (ScitechDaily, The Squid Galaxy’s Black Hole Just Unleashed a Neutrino Storm Without the Light)
Sometimes, some galaxies have very active quasars as their companion. Those quasars send high-energy radiation into the galaxy. The power of that energy is so strong that it puts the spiral galaxies's material to anneal. That energy boosts star formation. But it can also make it possible to test things like time dilation in the large-scale environment. The time dilation means that energy flow from particles turns slower.
And the energy from the quasar raises the energy level in that galaxy. When the environment's energy level rises, energy flow from particles decreases. If the environment reaches the same energy level with particles those particles will vanish. The existence of particles requires that there is a difference in energy levels between the particle and its environment. The energy level in a particle cannot go below the universe's energy minimum.
An interesting case would be the situation where the jet from another supermassive black hole hits another black hole. Or supermassive black hole's relativistic jets impact with another black hole's relativistic jet. That energy will push every particle into the form of a black hole. That kind of thing can start the quasar formation. Quasars are the first stage in the galaxy formation.
https://scitechdaily.com/quasar-powered-galaxy-attack-revealed-in-stunning-detail/
https://scitechdaily.com/the-squid-galaxys-black-hole-just-unleashed-a-neutrino-storm-without-the-light/
Thursday, May 15, 2025
Neutrino can be the tool of tomorrow's technology.
"An artist’s rendering of some of the detectors buried in ice that make up the IceCube Neutrino Observatory. Credit: Jamie Yang, IceCube Collaboration" (ScitechDaily, IceCube Spots Space’s Strangest Signal: A Neutrino Torrent With No Gamma Flash)
The strange neutrino beam from a distant galaxy reveals the neutrino models. And that closes the new way to communicate. Neutrinos offer many possibilities. From qubits to new types of communication and weapon technology. If the system can create and control neutrinos that allows the creation of new types of quantum sensors like scanning tunneling microscopes.
The size of a neutrino is about 1000 000 times smaller than an electron. And that makes it possible to create a scanning tunneling microscope that can observe even an atom's internal structures.
There is the possibility. That if some system can create neutrinos those things can give a new path to quantum technologies. The neutrino can form when high-power UV radiation destroys neutrons.
In a natural universe that happens when high-power UV light from black holes stresses helium atoms around them. That radiation causes the neutron decay. There is the possibility of making similar conditions on Earth using high-power UV lasers. The UV laser can use mercury vapor that the electric bursts stress. The UV laser is similar to a UV lamp or fluorescent lamp that sends UV radiation. The system just puts that UV radiation jump between mirrors. And that turns the UV light into coherent UV radiation.
The neutrino superposition and entanglement can be used to create the teleportation tool that can send a qubit through the wall. The neutrino can travel even through the planets. Then we think about quantum teleportation or particle teleportation. The teleportation happens through the quantum channel or wormhole. That makes secure and ultra-fast communication possible. The problem is that the quantum channel forms between two superpositioned and entangled particles.
That means that the quantum communication systems must make superposition and entanglement between two particles. Then the system must somehow send the recessive particle to the target. Then the transmitting- or higher-energy side of the quantum entanglement can transmit information through that channel. Theoretically, that system can send recessive particles even through the wall by pushing it with, maybe X-ray laser.
Theoretically it is possible to shoot things like electrons through that quantum channel, if the system can combine the quantum channels between neutrinos. The system must also control maybe millions or billions of neutrinos.
The system must trap electrons to the front of the neutrinos. And then that system can create the quantum entanglement between those neutrinos and send anti-neutrinos through that channel. If that kind of quantum channel is possible, that system can also teleport positrons, and antimatter electrons through the walls.
The neutrino is 1000 000 times smaller than an electron. But if the system can create a layer of neutrino group there the other layer turns into a recessive part. And then those neutrino groups will be put into superposition, which can create the rope-type quantum channel. There is also the possibility that the neutrinos act like a drill that opens the path to the other particles. The neutrino can also make it possible to create new and ultra-high accurate scanning tunneling microscopes. If the system can trap a neutrino and put it into the stylus, that system can scan the atom's internal structures, as I wrote at the beginning of this text.
https://scitechdaily.com/icecube-spots-spaces-strangest-signal-a-neutrino-torrent-with-no-gamma-flash/
Sunday, January 19, 2025
Little red dots and strange radiation can revolutionize physics.
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...
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“A long-standing mystery surrounding an unusual superconductor has taken a decisive turn. By carefully applying shear strain to ultrathin cr...
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"Physicists at SLAC National Accelerator Laboratory are exploring a new method to detect dark matter using quantum devices, focusing on...



















