Showing posts with label principle. Show all posts
Showing posts with label principle. Show all posts

Saturday, December 27, 2025

Why does everything exist?

   



In the very beginning of time and space. The event. Called: the Big Bang formed interference that caused the formation of matter. The Big Bang was not a single event. It was like a bubble. That fell into one point. And then energy reflected from that point. The Big Bang was like an oscillating bubble. The existence of matter requires that there was wave movement or even a static field in the space before the Big Bang happened. 

The Schwinger effect explains that particles are formed from the electromagnetic field. Or maybe. Some superstrings formed the whirls in the standing fields. There is a possibility. That's all the other wave fields. Like standing gravity waves, they can roll themselves into particles. The wave movement that should have existed before the Big Bang formed resistance. And that resistance formed the wave, which formed bubbles or whirls behind it. Without that resistance, the superstrings, which can be like small quantum tornadoes. Those quantum tornadoes formed quantum dots. That started to collect energy and wave movement around them. 

Maybe the Big Bang formed in the case that something oscillated the superstrings that caused the wave movement that traveled across the universe. The interference in or outside those quantum tornadoes can cause a situation where those small quantum tornadoes or quantum-size wormholes touch each other. And if energy traveled in the opposite direction, it formed the quantum-size electric arc. 

If we follow the model that all types of wave movements can pack into the same point, the quantum-size wormholes can make the quantum-size electric arc. And when we try to mimic the conditions at the beginning of the Universe. We forget that the quark-gluon plasma. At the beginning. The universe. It formed in conditions where the resistance was minimal. There were no such interferences as in the modern universe. 





Standard model with graviton, the gravitational wave transmitter, or gravitational transporter particle. The existence of the graviton is still hypothetical. But there is a possibility that the graviton exists in all particles. The graviton would be a particle that formed other particles around its shell. This means that all particles. Those that have mass should include the graviton. 

So, if the existence of the Universe is. The Schwinger. Effect doesn’t mean that the effect is formed in the electromagnetic field. It’s possible. That there formed hypothetical gravitons in the static field. Then those gravitons started to collect wave movement on their shell. Then those gravitons. Started. To grow into particles that we know as the Standard Model. 

The philosophical question about existence is this: if a bell rings in the forest, does it ring? The main idea is that. Even if we don’t have contact with that bell, we might think that it can ring. But. Otherwise, if the clock hand is removed, that clock will not ring. But we know that there is a clock. Well, there might be a clock in the forest, because we might have seen it yesterday. But otherwise, some other person. Might take it into the pocket. This means we cannot be sure. If. There is a bell still in the forest. Yesterday there was a bell, but now we cannot be sure. The bell exists. And because information cannot vanish. The information about the bell remains.  

If. We try to remember information and quantum theories. The information about that bell exists. But does the bell exist in the form of the bell? We might conclude that the information doesn’t depend on the object’s or space’s physical existence. But if existence requires interaction, the black hole that pulls objects behind the event horizon will remove matter from the universe. Otherwise, the black hole cannot destroy matter or information that is connected to matter. It just removes. Matter's. Ability to interact with its environment. 

When we think about wave-particle duality and the Schwinger effect, where wave movement turns into particles, and particles turn into wave movement. The impacting wave fields can form. The wire-shaped. A fast-spinning “worm” that can explain why. Can't we see the hypothetical weakly interacting massive particles (WIMPs) or axions? The axion is the worm or rope-shaped structure of the traveling quantum tornadoes. Those quantum tori can be the quantum-size wormholes. Who have wrapped themselves around each other. 

When we talk about everything, we talk about matter. Matter is the thing that makes the universe exist. Then we can consider the existence of matter and think that the wave-particle duality is what makes matter exist. And in this moment, we must realize that matter is a condensed form of wave movement. In the same way, whether matter or otherwise, particles can turn into the wave movement, and wave movement can turn into matter. 

This causes one of the most interesting and important questions in the world. That question is a thing. That we don’t see. Exist or not? Does interaction, or visible interaction, determine existence? This means that. We should see things. That. They exist. But being invisible doesn’t mean non-existence. 

The holographic principle means that everything is actually holographic. This means that every type of wave movement can form the hologram. And the gravitational hologram formed the universe. This means that matter is condensed wave movement. 

And particles are actually an extremely dense hologram. So we could theoretically create a so dense hologram. That. It turns into a physical object. We can transform wave movement into quarks. So that means. Maybe someday. That thing called the Schwinger effect. It can turn even larger objects into wave movement and teleport them to other places. 

In modern cosmology, all matter began its existence in the Big Bang. Many times, people ask, what was the energy level of the Big Bang? We should rather ask, what was the relation between the Big Bang and its environment? 

The Big Bang was a series of events that caused interference. That formed whirls. And then those whirls in the energy field formed particles. This type of explanation doesn’t include the expansion of the Universe. This means that in the past it was probably. Particles and particle groups that don’t exist anymore. 



https://bigthink.com/starts-with-a-bang/reality-objective-exist/



https://bigthink.com/starts-with-a-bang/something-instead-of-nothing/



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



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


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


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



https://en.wikipedia.org/wiki/Wave%E2%80%93particle_duality


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

Saturday, January 11, 2025

Measuring the position of the particle and its motion or speed.

"The uncertainty principle, also known as Heisenberg's indeterminacy principle, is a fundamental concept in quantum mechanics. It states that there is a limit to the precision with which certain pairs of physical properties, such as position and momentum, can be simultaneously known. In other words, the more accurately one property is measured, the less accurately the other property can be known." (Wikipedia, Uncertainty principle) 

That means when the position determination rises. That decreases accuracy in momentum measurement. 

There is the possibility. To use two independent operating systems for complete position and motion measurements. 

The uncertainty principle means that researchers cannot determine the particle's position and motion at the same time. That thing is impossible for one single system.

 But two independently operating systems can make that thing for a certain moment. So we can determine the position or place and motion or speed in certain moments. By using two systems. That can combine their data. 

If a researcher wants to determine the precise point of the particle and the speed at the same time. That person needs two separate systems. Another measures speed and another measures the position of the particle. 

The researcher can determine the precise point of the particle at a certain moment. And that particle's speed in the same moment using two separate measurement systems. 

Those two measurement systems that operate at a certain time can determine the precise point and speed of the particle at a certain moment. But there is also very much uncertainty outside that measurement point. The system can create a series of measurements that combine those quantities. 

But that determination cannot happen in the same moment when those observe the place and speed of the particle. The system can involve things like a vapor or wire chamber where the particle leaves a track and that track is the thing that the system can use in the point and speed determination. That can make the quantum technology more accurate. 


https://phys.org/news/2025-01-mathematical-methods-possibility-particles-thought.html


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

Tuesday, September 26, 2023

Why cannot we find errors in Einstein's theories?

 Why cannot we find errors in Einstein's theories?


Einstein must be wrong, and we know it. But nobody found errors in his theories. The theory of Relativity is two theories: Theory of Special Relativity. And the Theory of General Relativity. Those theories match certain types of gravitational fields. The theory of Special Relativity matches in the "straight universe" where gravitation is not strong. The theory of General Relativity matches in a strong gravitational field like near the sun. And that theory made it possible to calculate the planet Mercury's trajectory. 

But then we see one very interesting thing. The Theory of Relativity is tested only in weak gravitational fields. But what type of gravitational field is strong enough? That it can make those theories fall? Do they fall inside the event horizon of black holes?  



"As new and powerful telescopes gather new data about the universe, they reveal the limits of older theories. Credit: Shutterstock" (Phys.org/Why Einstein must be wrong: In search of the theory of gravity)






(https://www.sliderbase.com/spitem-104-1.html)


The uncertainty  principle of Werner Heisenberg says that it's impossible to measure precisely certain quantities. The place and momentum are both impossible to know at the same time. When measurement accuracy in some quantity increases, that means measurement error with some other quantity decreases. 

When the object's mass increases. That means gravitation turns more and more dominating. So in a black hole, the gravitation supplants or covers all other fundamental interactions.


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


When we are looking at gravitation. We are losing accuracy from the other three fundamental interactions. We cannot strip three fundamental interactions off from their entirety when we are measuring the gravitational effect between middle-class massive objects like planets and their stars. 

So that means if we put focus into some values or some quantity other quantities are less attented. The uncertainty principle in fundamental interactions is that they all interact with particles or particle groups in their entirety. All fundamental interactions affect particles and particle groups. We cannot divorce gravity from the other three fundamental interactions. We cannot remove all other forces from the sun for example. Those weaker forces exist. And in short distances, they are stronger than gravitation. 

Same way force cannot affect a system without affecting all its particles. So fundamental forces also affect objects as entireties. But in long distances, gravitation is dominating. So if we keep focus on gravitation, we lose focus on other recessive interactions. 

And when we are looking at gravity, we forget that there are also three other fundamental interactions. The effect of those interactions is limited. But it exists. If as an example electromagnetic interaction continues for billions of years at the same point on the planet that interaction affects to planet. Even if long-distance interaction between other fundamental forces than gravity is not very strong that interaction exists. 


https://phys.org/news/2023-09-einstein-wrong-theory-gravity.html


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


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


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


Astronomers could have a model for why photons from GRB 221009A were at a high energy level.

"An illustration shows a photon from the biggest cosmic explosion since the Big Bang reaching Earth. (Image credit: Robert Lea (created...