计算有传导电流的金属导体中孤电子漂移的主要平均特性

IF 0.9 Q3 Engineering
M. I. Baranov
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引用次数: 0

摘要

本文给出了在具有不同类型(永久、可变和脉冲)电导率 i0(t)和振幅-时间参数(ATP)的轴向流动电流的圆柱形导体金属中,孤电子纵向漂移速度 vmz、纵向电子德布罗格利波的圆周频率 ωmz 变化和纵向电子德布罗格利波的长度 λmz 的平均值的近似计算结果。对所获得的孤电子漂移速度 vmz 和电子德布罗格利波长度 λmz 的计算相关性进行验证的结果证明了它们的有效性和工作能力。所获得的数据证实了金属导体中 i0(t)和 ATP 所指示的导电电流的量子波性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Calculation of the Main Averaged Characteristics of the Drift of Lone Electrons in a Metal Conductor with a Conduction Current

Calculation of the Main Averaged Characteristics of the Drift of Lone Electrons in a Metal Conductor with a Conduction Current

The results of an approximate calculation of the averaged values of speeds of vmz of a longitudinal drift of lone electrons, of circular frequencies of ωmz change of longitudinal electronic de Broglie waves, and of lengths of λmz of longitudinal electronic de Broglie waves in the metal of a round cylindrical conductor with an electric axial-flow current of conductivity of i0(t) of different kinds (permanent, variable, and impulsive) and amplitude-time parameters (ATP) are presented. The results of verification of the obtained calculation correlations for speeds of vmz drift of lone electrons and lengths of λmz of electronic de Broglie waves in the examined conductor demonstrate their validity and working capacity. The obtained data confirm the quantum-wave nature of the electric current of conductivity of the indicated kinds of i0(t) and of ATP in a metallic conductor.

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来源期刊
Surface Engineering and Applied Electrochemistry
Surface Engineering and Applied Electrochemistry Engineering-Industrial and Manufacturing Engineering
CiteScore
1.60
自引率
22.20%
发文量
54
期刊介绍: Surface Engineering and Applied Electrochemistry is a journal that publishes original and review articles on theory and applications of electroerosion and electrochemical methods for the treatment of materials; physical and chemical methods for the preparation of macro-, micro-, and nanomaterials and their properties; electrical processes in engineering, chemistry, and methods for the processing of biological products and food; and application electromagnetic fields in biological systems.
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