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Thermal and non-thermal fluctuations in active polar gels

机译:活性极性凝胶的热和非热波动

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We discuss general features of noise and fluctuations in active polar gels close to and away from equilibrium. We use the single-component hydrodynamic theory of active polar gels built by Kruse and coworkers to describe the cytoskeleton in cells. Close to equilibrium, we calculate the response function of the gel to external fields and introduce Langevin forces in the constitutive equations with correlation functions respecting the fluctuation-dissipation theorem. We then discuss the breakage of the fluctuation-dissipation theorem due to an external field such as the activity of the motors. Active gels away from equilibrium are considered at the scaling level. As an example of application of the theory, we calculate the density correlation function (the dynamic structure factor) of a compressible active polar gel and discuss possible instabilities.
机译:我们讨论了接近和远离平衡的活性极性凝胶中噪声和波动的一般特征。我们使用由克鲁斯及其同事建立的活性极性凝胶的单组分流体力学理论来描述细胞中的细胞骨架。接近平衡时,我们计算凝胶对外部场的响应函数,并在本构方程中引入朗格文力,并具有关于波动耗散定理的相关函数。然后,我们讨论由于外部场(例如电动机的活动)导致的波动耗散定理的破坏。处于平衡状态的活性凝胶被认为是在缩放水平上。作为该理论应用的一个例子,我们计算了可压缩活性极性凝胶的密度相关函数(动态结构因子),并讨论了可能的不稳定性。

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