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Terahertz radiation induced chaotic electron transport in semiconductor superlattices with a tilted magnetic field

机译:太赫兹辐射在具有倾斜磁场的半导体超晶格中诱导混沌电子传输

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摘要

Chaotic electron transport in semiconductor superlattice induced by terahertz electric field that is superimposed on a dc electric field along the superlattice axis are studied using the semiclassical motion equations including the effect of dissipation. A magnetic field that is tilted relative to the superlattice axis is also applied to the system. Numerical simulation shows that electrons in superlattice miniband exhibit complicate nonlinear oscillating modes with the influence of terahertz radiation. Transitions between frequency-locking and chaos via pattern forming bifurcations are observed with the varying of terahertz amplitude. It is found that the chaotic regions gradually contract as the dissipation increases. We attribute the appearance of complicate nonlinear oscillation in superlattice to the interaction between terahertz radiation and internal cooperative oscillating mode relative to Bloch oscillation and cyclotron oscillation. (C) 2014 AIP Publishing LLC.
机译:利用包括耗散效应在内的半经典运动方程,研究了由太赫兹电场引起的半导体超晶格中沿超晶格轴叠加在直流电场上的混沌电子传输。相对于超晶格轴倾斜的磁场也施加到该系统。数值模拟表明,在太赫兹辐射的影响下,超晶格微带中的电子表现出复杂的非线性振荡模式。随着太赫兹振幅的变化,观察到了通过图案形成分叉在锁频和混沌之间的过渡。发现随着耗散的增加,混沌区域逐渐收缩。我们将超晶格中复杂的非线性振荡的出现归因于太赫兹辐射与相对于Bloch振荡和回旋加速器振荡的内部协作振荡模式之间的相互作用。 (C)2014 AIP Publishing LLC。

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