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Measurement of Correlations between Low-Frequency Vibrational Modes and Particle Rearrangements in Quasi-Two-Dimensional Colloidal Glasses

机译:准二维胶体玻璃的低频振动模式与粒子重排之间的相关性测量

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摘要

We investigate correlations between low-frequency vibrational modes and rearrangements in two-dimensional colloidal glasses composed of thermosensitive microgel particles, which readily permit variation of the sample packing fraction. At each packing fraction, the particle displacement covariance matrix is measured and used to extract the vibrational spectrum of the \u22shadow\u22 colloidal glass (i.e., the particle network with the same geometry and interactions as the sample colloid but absent damping). Rearrangements are induced by successive, small reductions in the packing fraction. The experimental results suggest that low-frequency quasilocalized phonon modes in colloidal glasses, i.e., modes that present low energy barriers for system rearrangements, are spatially correlated with rearrangements in this thermal system.
机译:我们调查了低频振动模式与由热敏性微凝胶颗粒组成的二维胶体玻璃中的重排之间的相关性,这些相关性很容易允许样品填充分数的变化。在每个填充分数下,测量颗粒位移协方差矩阵,并将其用于提取胶体玻璃的振动光谱(即与样品胶体具有相同几何形状和相互作用但没有阻尼的颗粒网络)。装填分数的连续小幅降低引起了重排。实验结果表明,胶体玻璃中的低频准局域声子模,即对系统重排呈现低能垒的模,在空间上与该热系统中的重排相关。

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