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Photo control of transport properties in a disordered wire: Average conductance, conductance statistics, and time-reversal symmetry

机译:光控制无序导线中传输特性的方法:平均电导,电导统计和时间反转对称性

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In this paper, we study the full conductance statistics of a disordered 1D wire under the application of light. We develop the transfer matrix method for periodically driven systems to analyze the conductance of a large system with small frequency of light, where coherent photon absorptions play an important role to determine not only the average but also the shape of conductance distributions. The average conductance under the application of light results from the competition between dynamic localization and effective dimension increase, and shows non-monotonic behavior as a function of driving amplitude. On the other hand, the shape of conductance distribution displays a crossover phenomena in the intermediate disorder strength; the application of light dramatically changes the distribution from log-normal to normal distributions. Furthermore, we propose that conductance of disordered systems can be controlled by engineering the shape, frequency and amplitude of light. Change of the shape of driving field controls the time-reversals symmetry and the disordered system shows analogous behavior as negative magneto-resistance known in static weak localization. A small change of frequency and amplitude of light leads to a large change of conductance, displaying giant opto-response. Our work advances the perspective to control the mean as well as the full conductance statistics by coherently driving disordered systems.
机译:在本文中,我们研究了在光的作用下无序一维导线的完整电导统计。我们开发了用于周期性驱动系统的传递矩阵方法,以分析具有小频率光的大型系统的电导,其中相干光子吸收在确定平均值和电导分布的形状中起着重要作用。在光的作用下,平均电导来自动态局部化和有效尺寸增加之间的竞争,并且显示出非单调行为是驱动幅度的函数。另一方面,电导分布的形状在中级无序强度中显示出交叉现象。光的施加将极大地将分布从对数正态分布变为正态分布。此外,我们建议可以通过设计光的形状,频率和幅度来控制无序系统的电导。驱动场形状的变化控制了时间反转的对称性,并且无序系统显示出类似于静态弱定位中已知的负磁阻的行为。光的频率和幅度的微小变化会导致电导的较大变化,从而显示出巨大的光电响应。我们的工作提出了通过相干地驱动无序系统来控制均值和完整电导统计的观点。

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