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首页> 外文期刊>The Journal of Chemical Physics >Simulations of the dynamics of thermal undulations in lipid bilayers in the tensionless state and under stress
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Simulations of the dynamics of thermal undulations in lipid bilayers in the tensionless state and under stress

机译:无张力状态和应力作用下脂质双层中热波动动力学的模拟

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The relaxation processes of height undulations and density fluctuations in a membrane have been studied by molecular dynamics simulations of a coarse grained amphiphilic bilayer model. We observe a double exponential decay in their time correlations, with relaxation rates in good quantitative agreement with the theory by Seifert and Langer [Europhys. Lett. 23, 71 (1993)]. Intermonolayer friction due to slippage between the two monolayers is shown to be the dominant dissipative mechanism at the high wave numbers, q>10 mu m(-1), typically encountered in computer simulations. We briefly discuss the ramifications of the slow undulatory relaxation process for the calculation of bending rigidities from the static undulation structure factors. The relaxation rates are sensitive to the surface tension, and at high elongations an oscillatory contribution is observed in the time correlation of the undulations. (c) 2006 American Institute of Physics.
机译:通过粗糙的两亲双层模型的分子动力学模拟研究了膜中高度起伏和密度波动的松弛过程。我们观察到它们的时间相关性呈双指数衰减,松弛率与Seifert和Langer [Europhys。来吧23,71(1993)]。由两个单层之间的滑动引起的单层间摩擦被证明是在计算机模拟中通常遇到的高波数q> 10μm(-1)时的主要耗散机制。我们简要讨论了缓慢的起伏松弛过程对从静态起伏结构因素计算弯曲刚度的影响。松弛速率对表面张力敏感,并且在高伸长率下,在起伏的时间相关性中观察到振荡的贡献。 (c)2006年美国物理研究所。

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