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Coherent control of electron propagation and capture in semiconductor heterostructures

机译:半导体异质结构中电子传播和捕获的相干控制

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摘要

We theoretically study the use of quantum interference to coherently control the transverse direction in which carriers are optically injected in a semiconductor heterostructure, and the subsequent transport and capture of these carriers. We consider a structure consisting of three quantum wells, where carriers can be ejected from the middle one in a given direction by coherently controlled optical pulse excitations. After traveling through the barrier, electrons are slowed down by space-charge effects, and can be captured in the side wells by emitting a phonon. If the side wells are different, the coherent control of the injection can be monitored optically. We propose a design of a AlGaAs heterostructure for a possible experimental realization of the effects considered in this paper.
机译:我们从理论上研究了量子干涉的使用,以相干地控制将载流子光学注入半导体异质结构的横向方向,以及随后对这些载流子的传输和捕获。我们考虑一种由三个量子阱组成的结构,通过相干控制的光脉冲激发,可以在给定方向上从中间一个量子阱中弹出载流子。在穿过势垒之后,电子会由于空间电荷效应而减慢速度,并且可以通过发射声子而被捕获在边阱中。如果侧井不同,则可以光学监控注射的相干控制。我们提出了一种AlGaAs异质结构的设计,以实现本文考虑的效果的可能的实验实现。

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