Shiba Hayato, Noguchi Hiroshi, Fournier Jean-Baptiste
Institute for Solid State Physics, University of Tokyo, Chiba 277-8581, Japan.
Laboratoire Matière et Systèmes Complexes (MSC), UMR 7057 CNRS, Université Paris Diderot, F-75205, Paris, France.
Soft Matter. 2016 Feb 28;12(8):2373-80. doi: 10.1039/c5sm01900a.
Three types of surface tensions can be defined for lipid membranes: the internal tension, σ, conjugated to the real membrane area in the Hamiltonian, the mechanical frame tension, τ, conjugated to the projected area, and the "fluctuation tension", r, obtained from the fluctuation spectrum of the membrane height. We investigate these surface tensions by means of a Monge gauge lattice Monte Carlo simulation involving the exact, nonlinear, Helfrich Hamiltonian and a measure correction for the excess entropy of the Monge gauge. Our results for the relation between σ and τ agrees well with the theoretical prediction of [J.-B. Fournier and C. Barbetta, Phys. Rev. Lett., 2008, 100, 078103] based on a Gaussian approximation. This provides a valuable knowledge of τ in the standard Gaussian models where the tension is controlled by σ. However, contrary to the conjecture in the above paper, we find that r exhibits no significant difference from τ over more than five decades of tension. Our results appear to be valid in the thermodynamic limit and are robust to changing the ensemble in which the membrane area is controlled.
对于脂质膜,可以定义三种表面张力:内部张力σ,它与哈密顿量中实际膜面积共轭;机械框架张力τ,它与投影面积共轭;以及“涨落张力”r,它从膜高度的涨落谱中获得。我们通过涉及精确的非线性赫尔弗里希哈密顿量的蒙日规范晶格蒙特卡罗模拟以及对蒙日规范多余熵的量度校正来研究这些表面张力。我们得到的σ与τ之间关系的结果与基于高斯近似的[J.-B. 富尔尼耶和C. 巴尔贝塔,《物理评论快报》,2008年,第100卷,078103]的理论预测吻合得很好。这为在张力由σ控制的标准高斯模型中τ提供了有价值的认识。然而,与上述论文中的推测相反,我们发现在超过五个数量级的张力范围内,r与τ没有显著差异。我们的结果在热力学极限下似乎是有效的,并且对于改变控制膜面积的系综具有鲁棒性。