固体中电子的特性

J. Shive
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引用次数: 1

摘要

晶体电子能级方案中常见的价带禁隙导带特征的起源是根据1)单个原子的原子能级方案的推广,2)在周期势封闭中价电子气体的量子化动量谱的检验,以及3)与周期性负载机械传输线频率特性中的通带和阻带特征的类比。由于前两种方法在传统文献中得到了充分的讨论,本文特别讨论了第三种方法,对于具有机械或电气工程背景而不是理论物理背景的读者来说,第三种方法可能比其他两种方法更受欢迎。描述了一种简单的机械波传输装置,用它可以观察和绘制频率特性。通过认识到晶体可以被视为电子波的“负载”传输线,这一特性随后与固体的能带图相关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristics of Electrons in Solids
The origin of the familiar valence band-forbidden gap-conduction band features of the electronic energy level scheme of a crystalline solid is developed according to 1) the extension of the atomic energy level scheme for individual atoms, 2) examination of the quantized momentum spectrum of a valence electron gas in a periodic potential enclosure, and 3) analogy with the pass-band and stop-band features in the frequency characteristic of a periodically-loaded mechanical transmission line. Since the first two approaches are amply treated in the conventional literature, this paper dwells particularly on the third approach, which may be preferred over the other two by readers having more extensive backgrounds in mechanical or electrical engineering than in theoretical physics. A simple mechanical wave transmission apparatus is described, with which the frequency characteristic can be observed and plotted. This characteristic is then related to the energy band picture of a solid by recognizing that a crystal can be regarded as a "loaded" transmission line for electron waves.
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