Transmission and Processing of Information Using Two-Stream Neutrino Communication

M. Egorov, I. Kovalenko, M. Makarova, K. A. Isanov, D. V. Dzhan
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Abstract

The paper considers the problem of organizing neutrino communication. The search for options to increase the data transfer rate was performed. For this, an analysis is carried out and the concept of multichannel neutrino communication is presented, and its physical implementation is described. It is proposed to create a second channel for data transmission using the quantum oscillation effect by dividing the neutrino flux into different flavors. The quantum oscillation effect is considered in detail, including its applied use. Calculated estimates are made of the maxima and minima of the crests of oscillatory waves from the neutrino energy. Interpretation and use of the obtained data have shown the applicability of the proposed approach for the implementation of data transmission by splitting the stream by the quantum oscillation effect.
基于双流中微子通信的信息传输与处理
本文研究了组织中微子通信的问题。搜索提高数据传输速率的选项。对此进行了分析,提出了多通道中微子通信的概念,并对其物理实现进行了描述。提出利用量子振荡效应将微中子通量划分为不同的类型来创建数据传输的第二通道。详细讨论了量子振荡效应及其应用。计算估计是由中微子能量的振荡波波峰的最大值和最小值作出的。对所获得的数据的解释和使用表明,所提出的方法适用于利用量子振荡效应分裂流来实现数据传输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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