Drive dependence of the Hall angle for a sliding Wigner crystal in a magnetic field

C. Reichhardt, C. Reichhardt
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引用次数: 4

Abstract

We numerically examine the depinning and sliding dynamics of a Wigner crystal in the presence of quenched disorder and a magnetic field. In the disorder-free limit, the Wigner crystal Hall angle is independent of crystal velocity, but when disorder is present, we find that Hall angle starts near zero at the depinning threshold and increases linearly with increasing drive before reaching a saturation close to the disorder free value at the highest drives. The drive dependence is the result of a side jump effect produced when the charges move over pinning sites. The magnitude of the side jump is reduced at the higher velocities. The drive dependent Hall angle is robust for a wide range of disorder parameters and should be a generic feature of classical charges driven in the presence of quenched disorder and a magnetic field.
磁场中滑动维格纳晶体霍尔角的驱动依赖性
我们用数值方法研究了维格纳晶体在失序淬火和磁场作用下的脱屑和滑动动力学。在无无序极限下,Wigner晶体霍尔角与晶体速度无关,但当无序存在时,我们发现霍尔角在沉降阈值处开始接近于零,随着驱动的增加而线性增加,直到在最高驱动处达到接近无无序值的饱和。驱动依赖是电荷在钉钉位置移动时产生的侧跳效应的结果。在较高的速度下,侧跳的幅度减小。驱动相关的霍尔角在很大范围的无序参数下是鲁棒的,并且应该是在淬火无序和磁场存在下驱动的经典电荷的一般特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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