The quantum avalanche is a quantum-size avalanche. When the system reaches certain parameters, it can start to travel at a lower energy level. So when something affects the system, that causes a situation where that effect escalates through the entire system. In quantum avalanches, all particles transmit their energy out of the system at the same moment. So certain parameters cause effects that escalate through the entire system.
So that means that when one particle starts to transmit information, there is a possibility that this energy will rip the system into pieces. One of the best examples of the model of a quantum avalanche is the case where a group of balls are on the tilting level. The tilt makes those balls fall through the layer at the same time.
"Unraveling the mystery of insulator-to-metal transitions, new research into the “quantum avalanche” uncovers new insights into resistive switching and offers potential breakthroughs in microelectronics." (AcitechDaily/Unraveling the mystery of insulator-to-metal transitions, new research into the “quantum avalanche” uncovers new insights into resistive switching and offers potential breakthroughs in microelectronics.)That thing opens up new ideas for R&D in communication tools. The Quantum avalanche brings one thing in front of us: The lower energy system can send energy to the higher energy system very easily. The sum of the energy levels of particle groups can be higher than those of individual particles.
There is the possibility that quantum entanglements can transmit energy into higher-energy particles because the common energy level of quantum entanglements can be higher than that of individual particles. That makes it possible for information to travel from the bottom to the top. The thing is that the quantum avalanche can be the most interesting phenomenon in the R&D process of compute
https://scitechdaily.com/quantum-avalanche-a-phenomenon-that-may-revolutionize-microelectronics-and-supercomputing/
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