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The bending rigidity of an amphiphilic bilayer form equilibrium and nonequilibrium molecular dynamics

机译:两亲性双层分子的弯曲刚度形成平衡和非平衡分子动力学

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摘要

Helfrich's theory predicts that the bending free energy of a tensionless amphiphilic bilayer is proportional to the square of the Fourier coefficients of the undulation modes. Equilibrium molecular dynamics simulations with coarse-grained amphiphiles confirm the correctness of this prediction for thermally excited undulations. The proportionality constant then rovides the bending rigidity of the layer. Non-equilibrium methods, in particular umbrella sampling, potential of mean constraint force, and thermodynamic integration in Cartesian coordinates, have been used to extend the range of sampled amplitudes. For small amplitudes there is a good agreement with the equilibrium simulations, while beyond the thermally accessible amplitudes a clear deviation from theory is observed. Calculations of the elastic modulus shoed a pronounced system size dependence.
机译:Helfrich的理论预测,无张力的两亲性双层的弯曲自由能与起伏模式的傅立叶系数的平方成正比。粗粒两亲物的平衡分子动力学模拟证实了该预测对于热激发起伏的正确性。然后,比例常数提供了该层的抗弯刚度。非平衡方法,特别是伞状采样,平均约束力的潜力以及笛卡尔坐标中的热力学积分,已被用来扩展采样幅度的范围。对于小振幅,与平衡模拟有很好的一致性,而在热可及振幅之外,观察到与理论的明显偏差。弹性模量的计算具有明显的系统尺寸依赖性。

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