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Equilibrium theory for a particle pulled by a moving optical trap

机译:运动的光陷阱拉动的粒子的平衡理论

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The viscous drag on a colloidal particle pulled through solution by an optical trap is large enough that on experimentally relevant time scales the mechanical force exerted by the trap is equal and opposite the viscous drag force.The rapid mechanical equilibration allows the system to be modeled using equilibrium theory where the effects of the energy dissipation (thermodynamic disequilibrium) show up only in the coordinate transformations that map the system from the laboratory frame of reference,relative to which the particle is moving,to a frame of reference in which the particle is,on average,stationary and on which the stochastic dynamics is governed by a canonical equilibrium distribution function.The simple equations in the stationary frame can be analyzed using the Onsager-Machlup theory for stochastic systems and provide generalizations of equilibrium and near equilibrium concepts such as detailed balance and fluctuation-dissipation relations applicable to a wide range of systems including molecular motors,pumps,and other nanoscale machines.
机译:光学陷阱将胶体颗粒从溶液中拉出后的粘性阻力足够大,以至于在实验相关的时间尺度上,陷阱所施加的机械力是相等的并且与粘性阻力相反。快速的机械平衡使得可以使用平衡理论,其中能量耗散(热力学不平衡)的影响仅在将系统从相对于粒子移动的实验室参考系映射到相对于粒子所在的参考系的坐标变换中才会显示出来,稳态框架中的简单方程可以使用Onsager-Machlup理论对随机系统进行分析,并提供平衡和近似平衡概念(如详细信息)的概括。平衡和波动耗散关系适用于广泛的系统EMS包括分子马达,泵和其他纳米级机器。

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