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光学晶格中滑动胶体单层的亚谐波夏皮罗台阶

Subharmonic Shapiro steps of sliding colloidal monolayers in optical lattices.

作者信息

Paronuzzi Ticco Stella V, Fornasier Gabriele, Manini Nicola, Santoro Giuseppe E, Tosatti Erio, Vanossi Andrea

机构信息

Dipartimento di Fisica, Università di Milano, Via Celoria 16, 20133 Milano, Italy. International School for Advanced Studies (SISSA), Via Bonomea 265, I-34136 Trieste, Italy.

出版信息

J Phys Condens Matter. 2016 Apr 6;28(13):134006. doi: 10.1088/0953-8984/28/13/134006. Epub 2016 Mar 2.

DOI:10.1088/0953-8984/28/13/134006
PMID:26933976
Abstract

We investigate theoretically the possibility to observe dynamical mode locking, in the form of Shapiro steps, when a time-periodic potential or force modulation is applied to a two-dimensional (2D) lattice of colloidal particles that are dragged by an external force over an optically generated periodic potential. Here we present realistic molecular dynamics simulations of a 2D experimental setup, where the colloid sliding is realized through the motion of soliton lines between locally commensurate patches or domains, and where the Shapiro steps are predicted and analyzed. Interestingly, the jump between one step and the next is seen to correspond to a fixed number of colloids jumping from one patch to the next, across the soliton line boundary, during each ac cycle. In addition to ordinary 'integer' steps, coinciding here with the synchronous rigid advancement of the whole colloid monolayer, our main prediction is the existence of additional smaller 'subharmonic' steps due to localized solitonic regions of incommensurate layers executing synchronized slips, while the majority of the colloids remains pinned to a potential minimum. The current availability and wide parameter tunability of colloid monolayers makes these predictions potentially easy to access in an experimentally rich 2D geometrical configuration.

摘要

我们从理论上研究了以下可能性

当对由外力拖动在光学产生的周期性势场中运动的二维胶体颗粒晶格施加时间周期势或力调制时,以夏皮罗台阶的形式观察到动态模式锁定。在此,我们给出了二维实验装置的实际分子动力学模拟,其中胶体滑动通过局部相称斑块或畴之间的孤子线运动来实现,并且对夏皮罗台阶进行了预测和分析。有趣的是,在每个交流周期内,从一个台阶到下一个台阶的跳跃对应于固定数量的胶体跨越孤子线边界从一个斑块跳到下一个斑块。除了普通的“整数”台阶(在此与整个胶体单层的同步刚性推进一致)之外,我们的主要预测是存在额外的较小“次谐波”台阶,这是由于不相称层的局部孤子区域执行同步滑动,而大多数胶体仍固定在势阱中。胶体单层当前的可用性和广泛的参数可调性使得这些预测在实验丰富的二维几何构型中可能易于实现。

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Subharmonic Shapiro steps of sliding colloidal monolayers in optical lattices.光学晶格中滑动胶体单层的亚谐波夏皮罗台阶
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