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Resonance bands and resonating pairs: theoretical fundamentals of resonant tunneling

机译:共振带和共振对:共振隧穿的理论基础

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Resonant tunneling through one-dimensional quantum-mechanical systems such as multibarrier structures and superlattices has been studied in order to solidify the foundation of exact and comprehensive treatment of it. For general systems with piecewise continuous potential and effective-mass profiles, it is proven that allowable energy levels for resonant tunneling comprise a band structure-i.e., resonance bands which are distinct, in general, from the so-called subbands. One can see a resonance is attained by adjusting external parameters to match with a real resonating pair of the objective section (internal structure). In a series connection of two or more subsections (or a heterostructure with two or more layers), resonant tunneling is shown to be caused, this time, by a matching of generally complex resonating pairs of each couple of succeeding subsections. Two particular kinds of structures, i.e., imaginal-iteration and simple-iteration structures, are investigated in detail with regard to the matching between subsections at each resonant energy level. Thus, the possibility of resonance can be seen not directly related with resonance bands of the subsections. The overall argument will provide insight into the mechanism of resonant tunneling.
机译:已经研究了通过一维量子力学系统(例如多势垒结构和超晶格)的共振隧穿,以巩固对其进行精确和全面处理的基础。对于具有分段连续电势和有效质量曲线的一般系统,已证明谐振隧穿的允许能级包括能带结构,即,通常与所谓的子带不同的谐振带。可以看到,通过调整外部参数使其与目标部分的真实谐振对(内部结构)匹配,可以实现谐振。在两个或更多个子部分(或具有两个或更多个层的异质结构)的串联连接中,这一次显示出共振隧穿是由相继的每对子部分中的一般复杂的共振对的匹配引起的。关于在每个共振能级处的分段之间的匹配,详细研究了两种特殊类型的结构,即虚构迭代和简单迭代结构。因此,可以看出共振的可能性与该小节的共振带不直接相关。总体论点将提供对共振隧穿机制的深入了解。

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