基于约瑟夫森结的高温核电压的战术脉冲发生器

V. Kychak, M. Huz, V. Makohon, A. A. Kolomiiets
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引用次数: 0

摘要

. 当前电子技术的发展状况和无线信息传输系统的迅速发展,要求人们寻求新的技术来满足不断提高的信号传输频率的要求。揭示了时钟脉冲发生器作为数字信息处理器件的工作原理,特别是建立了基于约瑟夫森跃迁的时钟脉冲发生器的物理模型。给出了时钟发生器的设计方案,并对其进行了描述。描述了双触点超导量子干涉传感器(SQIS)电压响应函数的线性化,并将微分方程的解表示为电压响应随时间的函数。在提出的微分方程解的基础上,研究了波函数相位差的变化与等效PD格式参数的关系,并将研究结果以图形的形式给出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GENERATOR OF TACTICAL IMPULSES ON THE BASIS OF THE HIGH – TEMPERATURE NUCLEAR VOLTAGE OF JOSEPHSON JUNCTIONS
. The current state of development of electronic technology and the rapid development of wireless information transmission systems requires the search for new technologies that would meet the requirements of increasing the frequency of signal transmission. The idea of the idea of generators operation of clock pulse generators as devices of digital information processing is revealed in the work, in particular the physical model of the clock pulse generator on the basis of Josephson transitions is constructed. The scheme of the clock generator is given and its description is made. The linearization of the two-contact superconducting quantum interference sensors (SQIS) voltage response function is described with the representation of the solution of the differential equation as a function of the voltage response versus time. Based on the proposed solution of the differential equation, the dependence of the change in the phase difference of the wave functions on the parameters of the equivalent PD scheme is investigated, the research results are presented in the form of graphs.
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