Showing posts with label dominating effect. Show all posts
Showing posts with label dominating effect. Show all posts

Tuesday, October 11, 2022

There are no homogenous quantum systems in our universe.



Theoretically is the possibility to put the things like electrons into one certain-looking entirety. It's possible, that researchers can calculate the point where the forces like quantum gravitation and quantum fields make it possible. That particle can remain at a certain distance and a certain position from another particle. 

The problem with quantum systems is that they are not homogenous. Even in the cleanest possible systems are always quarks and photons. And that thing makes the system hard to remain as one entirety. Even if the distance between particles is calculated so accurately that they could stay in one form the other particles or wave motion brings artifacts or non-controlled events in that system. 

The thing is that the quantum systems are hard to control because outcoming effects are not possible to calculate. There is a theoretical possibility to create a quark or electron cloud that remains in a certain form. But the outcoming effect makes that thing at least very difficult to make in real life. 


To see the entire quantum system observer must stay outside it. But if the observer is inside the system it's hard to detect the entirety. 


The image above shows why quantum systems are hard to detect if an observer is inside a certain quantum system. When there is some dominating effect in that system. That dominating effect covers all other effects under it. And dominating effect makes it very difficult to detect other effects. If we are under that streetlight. 

We would not see buildings around that location. This image shows that if the observer is outside the system observer can observe it. But if you are inside the system you are hard to see outside things. The fact is that dominating effect in the quantum system acts like a streetlight. It covers all other details under its shine. 

Whenever the outcoming energy impacts the quantum system the participants of that system are sending radiation. And that radiation covers the radiation that comes outside the system. 

Things like energy waves can also cover another quantum system under it. Standing energy- or information wave can cover the existence of another quantum system. 

And then another thing is that if the energy levels of the quantum systems are different that makes it is hard to exchange information between the two quantum systems. If the quantum system where the observer has a higher energy level than the outside system energy flows to the quantum system that is at the lower energy level. 

The system that has a higher energy level is an active- or dominating participant in that model. And the system whose energy level is lower is a passive- or recessive participant of the combination of those quantum systems. The recessive participant of that system is receiving participant. The system that is a higher energy level transmits information. 

Those quantum systems act like radios. When another participant transmits information the transmitter cannot make sure that the receiver has received that information. 

So when information travels to one side between two quantum systems the recessive system detects the dominating system. But the dominating system cannot detect the recessive system because information travels to the recessive system. There is required some kind of echo that raises the energy level of the receiving system so high that it can send energy- or information impulse to the transmitting system. 

Energy is like a hill. When another participant is at a lower energy level it must raise something in it to a higher energy level than the transmitter so that it can send the information against that hill so that it can reach the transmitter. 


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Friday, July 22, 2022

Could graviton be like a bag, that surrounds objects?




Could graviton be the field outside the particle?


There is the possibility that gravitation is the quantum field outside or around the particle. The idea of this model is that all particles have a similar radiation pike with black holes. And that radiation pike pulls quantum field or quantum strings to the poles of the particle. 

Those quantum strings behave like Archimedean screws or buckets in belt pumps and aim the quantum fields to the poles of the particle. That causes the quantum low-pressure that pulls quantum fields to the particle. 

That means if this thing is true the radiation pike at the pole of the particle is the repelling or pushing component. And the other quantum fields are pulling components. That means the pushing component's diameter is so far smaller than the pulling component.  


The gravitation is special because it will not increase the object's temperature. But it can turn into kinetic energy. Or increase the kinetic energy of the particle. And it affects all objects, including photons same way. 


The thing that makes gravitation interesting is that things like gravitational slings that crafts like Voyager probes show that the gravitation can load energy to particles and objects. But the problem is what kind of energy is transferred to that object when it passes the planet with a hyperbolic trajectory. We all know that energy cannot be lost. It can just change its form. 

So what is the form of energy that turns to kinetic energy during gravitational slinging? Of course, we can say, that gravitation energy is the thing that increases the energy of things like voyager probes. But is that gravitation energy some kind of wave motion or superstrings that increase the object's kinetic energy without warming that thing? The thing is that gravitational sling bases the centripetal force. But what type of thing causes that effect? 

When we think about the universe. It's full of quantum fields. Those quantum fields are like fog. Droplets of that fog are atoms, molecules, and wave motion. When the object travels in that fog its speed determines how many droplets hit it in the time unit. When an object hits those things load energy on them. And around the gravitational centers is more droplets than in another environment. 

The gravitation itself is wave motion. And the source of that wave motion is the predicted hypothetical graviton. 

But the location of the graviton is a mystery. The graviton could exist in the middle of particles that have a mass. It can be between the superstrings that are forming the elementary particles. So the graviton would be an extremely small particle. 

Or it can be outside the atom and every particle. The idea of this model is that graviton is like a bag that surrounds atoms and subatomic particles. The idea is that every single particle has a jet that comes out from it. The jet is similar to a black hole's jet and gamma-ray pike. But in regular material that pike is weaker. 

When the radiation or wave-motion pike takes energy out from the "bag" around the particle the wave motion that forms the quantum field around atoms and subatomic particles travel to that pike. The wave motion will pull other wave motion to that particle. If we are thinking that wave motion travels to the poles of the particle it acts like a bucket in a belt pump and pumps also wave motion from around the particle to its poles. That thing explains why gravitation is so different force than other fundamental interactions.  

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...