Quantum Coherence and Entanglement of Electrons and Photons in Nanocrystals for VR/AR/MR/Metaverse Systems

The development of immersive technologies is also taking place in the areas of quantum computer science. It is important to create models and methods of quantum computing and communications. An experiment on two identical samples of nanocrystals has shown that when they interact remotely, resonant states are destroyed, which can be considered as a manifestation of quantum entanglement. It can be assumed that the considered model of the motion and interaction of an electron in a quantum–dimensional object, a nanocrystal with a perfect crystal structure, corresponds to the quantum coherence and entanglement of electronic states, and the nanocrystal itself can be a source and recorder of entangled electronic states and photons. © 2025 Elsevier B.V., All rights reserved.

Авторы
Zhukov Nikolay D. 1 , Belyaev Victor V. 1, 2 , Kuleshova Yulia 1 , Kuznetsov Mikhail 1 , Sun Jie 3 , Yan Qun 3
Издательство
Society for Information Display
Номер выпуска
S1
Язык
English
Страницы
437-440
Статус
Published
Том
56
Год
2025
Организации
  • 1 State University of Education, Moscow, Russian Federation
  • 2 Academy of Engineering, RUDN University, Moscow, Russian Federation
  • 3 College of Physics and Information Engineering, Fuzhou University, Fuzhou, China
Ключевые слова
dimensional quantization; Immersive technologies; nanocrystal; quantum coherence; quantum computing; quantum conduction; quantum dot; quantum entanglement; quantum oscillations
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