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Use of stochastic web patterns to control electron transport in semiconductor superlattices

机译:使用随机网状图案控制半导体超晶格中的电子传输

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摘要

Chaotic electron transport has been explored in a variety of semiconductor structures in which the transition to chaos occurs by the gradual and progressive destruction of stable orbits in response to an increasing perturbation. There is also a much rarer type of chaos, known as non-KAM dynamics, which switches on and off abruptly when the temporal frequency of the perturbation reaches certain critical values. This type of chaotic motion is of great interest due to diverse applications in the theory of plasma physics, tokamak fusion, turbulent fluid dynamics, ion traps, and quasicrystals, but has not yet been realized in experiment. Here, we show that electrons in a superlattice miniband with a tilted magnetic field provide an experimentally-accessible non-KAM system and, moreover, that this unusual type of chaotic dynamics can produce strong resonant enhancement of the electron drift velocity. The onset of chaos is characterized by the formation of intricate "stochastic web" patterns in the electron phase space. These webs delocalize the electron orbits, thereby generating strong resonant peaks in our calculated drift velocity versus electric field characteristics. (C) 2004 Elsevier B.V. All rights reserved.
机译:已经在各种半导体结构中探索了混沌电子传输,其中响应于增加的扰动,通过稳定轨道的逐渐和渐进破坏来发生向混沌的转变。还有一种更罕见的混沌类型,称为非KAM动力学,当扰动的时间频率达到某些临界值时会突然打开和关闭。由于在等离子体物理,托卡马克聚变,湍流动力学,离子阱和准晶体等理论中的各种应用,这种混沌运动引起了人们的极大兴趣,但尚未在实验中实现。在这里,我们显示了具有倾斜磁场的超晶格微带中的电子提供了一个实验可访问的非KAM系统,此外,这种异常类型的混沌动力学可以产生电子漂移速度的强共振增强。混乱的开始的特征是在电子相空间中形成复杂的“随机网”图案。这些网使电子轨道离域,从而在我们计算出的漂移速度与电场特性之间产生强共振峰。 (C)2004 Elsevier B.V.保留所有权利。

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