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用于驱动过周期基底的涡旋和胶体的定向锁定的结构转变和动力学状态。

Structural transitions and dynamical regimes for directional locking of vortices and colloids driven over periodic substrates.

机构信息

Theoretical Division, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.

出版信息

J Phys Condens Matter. 2012 Jun 6;24(22):225702. doi: 10.1088/0953-8984/24/22/225702. Epub 2012 May 4.

Abstract

We examine collective dynamical locking effects for superconducting vortices and colloids interacting with square and triangular substrate arrays under a slowly rotated dc drive. A rich variety of lattice configurations associated with a series of steps in the velocity-force curves occur during the locking transitions. These include triangular, square, smectic, and disordered particle arrangements that can be identified using the structure factor. We show that the step widths vary with the ratio of the number of particles to the number of pinning sites. Unlike a static system, where matching effects occur at simple integer commensuration ratios, we find dynamical commensuration effects that arise when an integer number of particle chains flow between rows of pins. We identify two distinct types of locking as a function of substrate strength, distinguished by whether the particles flow along or between the pinning rows.

摘要

我们研究了在直流缓慢旋转驱动下,超导涡旋和胶体与方形和三角形衬底阵列相互作用的集体动力学锁定效应。在锁定转变过程中,会出现与速度-力曲线的一系列阶跃相关的丰富的晶格构型。这些包括三角形、方形、近晶和无序的粒子排列,可以使用结构因子来识别。我们表明,阶跃宽度随粒子数与钉扎位点数之比而变化。与在简单的整数匹配比下发生匹配效应的静态系统不同,我们发现了动态匹配效应,即在整数数量的粒子链在钉扎行之间流动时出现。我们根据衬底强度确定了两种不同类型的锁定,其区别在于粒子是沿钉扎行流动还是在钉扎行之间流动。

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