Skip to main content

The quantum internet. And smooth photon's problem.


"Flying single photons emitted from a quantum dot are coupled into a field-based deployed fiber in the city of Hannover, Germany, and sent to Braunschweig, Germany. Credit: Light: Science & Applications (2024). DOI: 10.1038/s41377-024-01488-0" (ScitechDaily, Unlocking the Quantum Internet: Germany’s Latest Experiment Sets Global Benchmarks)

The quantum internet is the system. That stores data into the particles like photons. In traditional networks, data travels as a wave movement. And wave movement is always a little bit less accurate. Because wave movement always expands like a shaft or beam of light. That means somebody can steal information from that beam. Even in highly accurate maser and laser systems. Wave movement shafts. That is the reason why the traditional internet is a little bit unsafe. 

In the quantum internet, data is stored in particles like photons. The photon travels at the speed of light. The information is the waves on the photon's shell. In quantum systems, photons can have multiple internal states or shells. The wave movement is the thing. That photon transports as information. And because the information is anchored on the photon, it's impossible to steal it. 

If we see those photons using some kind of microscope, we see the particle whose surface is full of waves like some water planet. Those waves are much smaller than quarks. They are the thing that makes photons transport information. 

But what if we can create a photon that has no waves on its surface? This kind of sterile photon would be smooth. The waves on the photon are the thing that makes other particle's quantum fields vibrate. The photon transports information to other quantum fields through those waves. That sends data to the quantum field like saws. Those waves transport waves to quantum fields. When a wave on a photon shell transports energy to the quantum field photon loses its energy. 


It's possible. That smooth photon can tunnel itself through the material. But is smooth photon without hair possible in nature


And the question is: what if the photon has not had those waves on its shell or surface? The thing is that this kind of photon can tunnel itself through the materials. The idea is like in the cases, where information travels faster than particles. When other particles reach their top speed the quantum field at the front of them rips photons off their shell. 

Maybe this kind of thing can form the nose where one of the superstrings that form photons turns forward. That superstring creates the nose for photons. That thing can create a situation in which the photon will plow quantum fields from ahead of it. That nose can explain why a photon's speed is the speed of light. When a photon travels in the quantum fields. That nose forms a similar situation to when a supersonic aircraft travels in the air.  

The photon loses its contact with quantum fields. Then the quantum shadow behind the photon pulls the superstring open. That causes a situation where the photon turns into wave movement. Then the energy that travels into the photon travels out from that tape-looking structure. That means the photon reaches energy stability. It gets as much energy as it releases. 


https://scitechdaily.com/unlocking-the-quantum-internet-germanys-latest-experiment-sets-global-benchmarks/

Comments

Popular posts from this blog

What is the difference between TR-3A and TR-3B? And are those planes real?

What is the difference between TR-3A and TR-3B? And are those planes real? Is TR-3B (0) "Black Triangle UFO" or is it only the piece of paper?  The study project, what is used to create advanced ideas for use of the nuclear-powered aircraft. Or is it the study project or black budget aircraft, where lost 2,3 trillion dollars (1)of the stealth bomber were gone. In this text is things, that might seem very difficult to accept, and when we are thinking about things like doubling the object or making it smaller by using huge layers of energy, nothing denies to test those things. But were those tests successful, there is no data about that in public Internet, so we must say that things like doubling the human or aircraft can be tested, but the results can be unknown.  But in the source two is the tale, what seems like impossible, those men, who got Noble Prize put at first time one atom to the box, and hit it with photon one photon in the box and hit it with th

Mythic Planet X is an interesting thing because that allows the way to the perfect stealth technology.

  Mythic Planet X is an interesting thing because that allows the way to the perfect stealth technology.  Could a hypothetical Planet X tunnel all radiation?  The myth of Planet X still lives. Nobody ever saw that planet, and the thing that supports the theory of previously unknown large-size planets in Kuiper's belt are mysterious anomalies in Neptune's trajectory. The thing is that nothing else supports the theory of the existence of the "invisible planet". The size of the planet must be very big. And its gravitational field strong that it can affect Neptune's trajectory.  And the search for that mysterious planet is very long work. In some visions, the mysterious gravitational source is mentioned as the small black hole, but nobody understands why that black hole doesn't seem to interact.  In some other theories, Planet X is a glimpse of dark matter. And that thing makes it invisible. But there is one weakness. The dark matter object must have some kind of

Nanoparticles are excellent tools for medicine transporters.

"Researchers have developed a new therapy for pancreatic cancer involving nanoparticles that stimulate immune responses and improve drug delivery. This innovative method has led to significant tumor reduction in mice and holds potential for treating other cancers. Credit: SciTechDaily.com" (ScitechDaily, New Nanoparticle Cancer Treatment Successfully Shrinks and Eliminates Pancreatic Tumors) Nanoparticles can carry medicines into wanted cells. The idea is that the same system that feeds those cells transports those nanoparticles into cells that need medicine. When a nanoparticle goes, into a cell, it releases the chemicals into the targeted cells. Because nanoparticles don't let medical molecules interact with a body that makes it possible to create new and more powerful cytostatics. Nanoparticles can transport things like ricin molecules into wanted cells.  Ricin is one of the most poisonous chemicals. That chemical is useful for next-generation cytostatics, if researche