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可压缩双层囊泡的热和活性涨落。

Thermal and active fluctuations of a compressible bilayer vesicle.

机构信息

Department of Physics, Indian Institute of Technology Madras, Chennai, 600036, India. Department of Chemistry, Graduate School of Science and Engineering, Tokyo Metropolitan University, Tokyo 192-0397, Japan.

出版信息

J Phys Condens Matter. 2018 May 2;30(17):175101. doi: 10.1088/1361-648X/aab6c7. Epub 2018 Mar 15.

Abstract

We discuss thermal and active fluctuations of a compressible bilayer vesicle by using the results of hydrodynamic theory for vesicles. Coupled Langevin equations for the membrane deformation and the density fields are employed to calculate the power spectral density matrix of membrane fluctuations. Thermal contribution is obtained by means of the fluctuation dissipation theorem, whereas active contribution is calculated from exponentially decaying time correlation functions of active random forces. We obtain the total power spectral density as a sum of thermal and active contributions. An apparent response function is further calculated in order to compare with the recent microrheology experiment on red blood cells. An enhanced response is predicted in the low-frequency regime for non-thermal active fluctuations.

摘要

我们通过使用囊泡的流体力学理论结果来讨论可压缩双层囊泡的热和主动涨落。采用膜变形和密度场的耦合朗之万方程来计算膜涨落的功率谱密度矩阵。热贡献是通过涨落耗散定理获得的,而主动贡献是通过主动随机力的指数衰减时间相关函数计算得到的。我们将总功率谱密度表示为热贡献和主动贡献的和。为了与最近对红细胞的微流变学实验进行比较,进一步计算了表观响应函数。对于非热主动涨落,在低频区预测到了增强的响应。

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