Showing posts with label trajectories. Show all posts
Showing posts with label trajectories. Show all posts

Thursday, October 7, 2021

Muon g-2 and wormholes




If the thing that causes the anomaly in the Muon g-2 tests is not in the particle accelerator. It's between Brookhaven laboratory, New York, and Fermilab, Chicago.

The strange thing in the Muon g-2 experiments is that the thing that seems to cause the strange anomaly in the trajectories of Muons seems to be between Brookhaven and Fermilab and that thing pushes the particles in their trajectory. If I read the diagram of the Muon g-2 experiment right the effect is pushing the muons in the opposite direction. 

And if the reason for that thing is outside the particle accelerator the source of the strange energy is between Brookhaven and Fermilab laboratories. The effect seems to push and that thing seems that there is some kind of source that pushes the particles away.  If that thing is the wormhole (Einstein-Rose bridge) the extremely think energy channel through the universe and Earth. 




Image II

Are wormholes (Einstein-Rose bridge) superpositioned and entangled black holes?


Could the wormhole be two channels that are taking material through space and time? In that case, the wormhole would be formed by series of superpositioned and entangled particles. In image II (Image II) is the portrait of the superpositioned particles. 

There is the possibility that the black holes could superpositioned themselves like those particles. Because the other particle is upside down to another that thing is giving an idea that the material or energy will move in two directions in the black hole. 

That thing would cause the interaction between some kind of energy and the particles. The idea is that the wormhole is the channel between superpositioned black holes. The material that drops in the black hole is not stable. So when the energy level in the superposition is rising. That causes the vibration in the black holes and the energy bridge between them. 

Nobody has ever seen a wormhole. But there is a theory that a wormhole is interacting with its environment through its quantum fields. The "cosmic neural structure" or cosmic web is causing an idea that the wormholes would be possible also in space. (Image III) Something causes that the material is packing in the structure which looks like the neural network. And one explanation for that structure could be the string-type structure that is pulling material around it. The cosmic web is the largest known structure in the universe. And that has caused many thoughts about the form of the universe. 




Image III

The black hole itself is the wormhole through time. But there is the possibility that the wormhole is two energy channels through the universe. In that case, energy will surround those two superpositioned black holes. In theory, black holes can be superpositioned and form the energy channels between them. 

But is it possible in real life? That thing is possible to ensure by comparing the oscillation of the black holes. And if the black holes are superpositioned and entangled. That thing means that the oscillation of those superpositioned and entangled black holes should be identical. 


https://muon-g-2.fnal.gov/


https://en.wikipedia.org/wiki/Brookhaven_National_Laboratory


https://en.wikipedia.org/wiki/Fermilab


https://en.wikipedia.org/wiki/Muon_g-2


https://en.wikipedia.org/wiki/Wormhole


Image III:https://www.sciencealert.com/astronomers-declare-the-boss-great-wall-the-biggest-thing-in-ever-found-in-the-universe

https://thoughtandmachines.blogspot.com/

Saturday, September 25, 2021

The speed of light is a relative constant.



The speed of light is constant. But it is also relatively constant because the speed of photons is different in different mediums. The curving photon comes to goal after the photon that travels by using straight trajectories. 

And the thing that causes the curving of trajectories of photons is the quantum fields. Outside the universe is no quantum fields. And that means light or photon is traveling there using a straight trajectory. That means two photons can travel in the same direction. But if the other photon travels with a more curving trajectory than the other. That means the other photon that travels less curving trajectory can reach the goal sooner than another photon. 

One interesting thing about the photon or the speed of light is that the gravitation affects the photons. That means that the photon that travels to the center of gravitation travels faster than the photon. That travels away from that point. 

The speed of light in a vacuum is 299792458 meters per second (approximately 300000 km/s, or 186000 mi/s). But the thing that makes the speed of a photon interesting. Is that the speed of light or photons in a medium like water or atmosphere is much lower. Then the speed of a photon is in a vacuum. 

And that thing is seen as the blue light around the nuclear reactors. The blue light is called "Cherenkov' radiation". The origin of "Cherenkov' radiation is in the particles. When those particles travel with the speed of light in a vacuum and hit the water. 

Water decreases the particle's speed to the speed of light in water. The energy cannot disappear and while the particle is slowing, it must transfer the kinetic energy to somewhere. When the particle slows its speed it must pump its energy to somewhere. 

And the energy that is released during the slowing process is visible as the blue light around the nuclear reactors. The same "Cherenkov radiation" causes the blue sky effect. And the blue flash of the particle that slows its speed is used in neutrino detectors. The flash of the light is also used in the free-electron lasers. When the electron is curving it releases the movement energy by sending photons. 

The thing that limits the speed of the light (or the speed of photons) is the scattering. The other photons that impact the photons are slowing their speed. But also the quantum fields around the atoms and other particles cause that the trajectory of those photons is not straight. Because the trajectory of the photon is curving that thing slows the speed of light. 

Outside the universe is no quantum fields. That means photons are traveling faster outside the material bubble called the universe. In that case, the "faster photon" means that the photon that travels by using the straight trajectory is at the goal before the photon that uses a curving trajectory.  

When we are thinking that the universe is the bubble where all material that we know exists. We might think that photons travel faster outside the universe. The reason for that is there are no quantum fields outside the universe. That means the photon can travel by using a straight trajectory. And that means the light travels faster outside the universe. 

The speed of light is not always been the same in the universe. In the young universe, the speed of light was lower than in the modern universe. The reason for that was that the scattering in the young universe was stronger than in the universe today. Youn universe was full of wave movement and traveling electrons where photons impacted. And the trajectories of the photons were more curving than today. 

What if we can create the straight-moving light? The reason why we cannot travel faster than the speed of light. Is that we cannot create exhaust gas that crosses the speed of light. 

Sometimes there is introduced a simple way to make the rocket that travels faster than light. The researchers must just make the light where photons are traveling with straight trajectories. Straight moving photons are faster than the photons that are moving curving trajectories. 

And theoretically, it's enough that the system removes quantum fields around the light source. That thing can make the photons travel faster than they are traveling in regular space. In regular space, quantum fields are making photons curving. And that slows the speed of light or photons.


()https://metro.co.uk/2019/06/10/could-we-ever-travel-faster-than-light-9632400/ 


()https://en.wikipedia.org/wiki/Cherenkov_radiation


()https://en.wikipedia.org/wiki/Speed_of_light


Image()https://metro.co.uk/2019/06/10/could-we-ever-travel-faster-than-light-9632400/


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

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