"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/