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具有键强无序的二维胶体晶体中的声子

Phonons in two-dimensional colloidal crystals with bond-strength disorder.

作者信息

Gratale Matthew D, Yunker Peter J, Chen Ke, Still Tim, Aptowicz Kevin B, Yodh A G

机构信息

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2013 May;87(5):052301. doi: 10.1103/PhysRevE.87.052301. Epub 2013 May 8.

DOI:10.1103/PhysRevE.87.052301
PMID:23767534
Abstract

We study phonon modes in two-dimensional colloidal crystals composed of soft microgel particles with hard polystyrene particle dopants distributed randomly on the triangular lattice. This experimental approach produces close-packed lattices of spheres with random bond strength disorder, i.e., the effective springs coupling nearest neighbors are very stiff, very soft, or of intermediate stiffness. Particle tracking video microscopy and covariance matrix techniques are then employed to derive the phonon modes of the corresponding "shadow" crystals with bond strength disorder as a function of increasing dopant concentration. At low frequencies, hard and soft particles participate equally in the phonon modes, and the samples exhibit Debye-like density of states behavior characteristic of crystals. For mid- and high-frequency phonons, the relative participation of hard versus soft particles in each mode is found to vary systematically with dopant concentration. Additionally, a few localized modes, primarily associated with hard particle motions, are found at the highest frequencies.

摘要

我们研究了由软微凝胶颗粒组成的二维胶体晶体中的声子模式,其中硬聚苯乙烯颗粒掺杂剂随机分布在三角晶格上。这种实验方法产生了具有随机键强度无序的紧密堆积球体晶格,即耦合最近邻的有效弹簧非常硬、非常软或具有中等刚度。然后采用粒子跟踪视频显微镜和协方差矩阵技术来推导具有键强度无序的相应“阴影”晶体的声子模式,作为掺杂剂浓度增加的函数。在低频下,硬颗粒和软颗粒在声子模式中同等参与,并且样品表现出晶体特有的德拜型态密度行为。对于中高频声子,发现硬颗粒与软颗粒在每种模式中的相对参与度随掺杂剂浓度而系统变化。此外,在最高频率处发现了一些主要与硬颗粒运动相关的局域模式。

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