Hamkens Daniel, Jeppesen Claus, Ipsen John H
MEMPHYS - Center for Biomembrane Physics, Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, DK-5230, Odense M, Denmark.
Eur Phys J E Soft Matter. 2018 Mar 28;41(3):42. doi: 10.1140/epje/i2018-11651-6.
We have analyzed the behavior of a randomly triangulated, self-avoiding surface model of a flexible, fluid membrane subject to a circular boundary by Wang-Landau Monte Carlo computer simulation techniques. The dependence of the canonical free energy and frame tension on the frame area is obtained for flexible membranes. It is shown that for low bending rigidities the framed membrane is only stable above a threshold tension, suggesting a discontinuous transition from the collapsed (branched polymer) state to a finite tension extended state. In a tension range above this threshold tension the membranes display power-law characteristics for the equation of state, while higher tension levels includes both an extended linear (elastic) as well as a highly non-linear stretching regime. For semi-flexible membranes a transition from extended to buckled conformations takes place at negative frame tensions. Our analysis indicates that at zero frame tension the crumpling transition of fluid membranes show characteristics of both critical behavior and a discontinuous transition at low bending rigidities.
我们通过王-兰道蒙特卡罗计算机模拟技术,分析了一个受圆形边界约束的柔性流体膜的随机三角剖分、自回避表面模型的行为。对于柔性膜,我们得到了正则自由能和框架张力对框架面积的依赖性。结果表明,对于低弯曲刚度的情况,带框架的膜仅在高于阈值张力时才稳定,这表明从塌陷(支化聚合物)状态到有限张力伸展状态存在不连续转变。在高于该阈值张力的张力范围内,膜的状态方程呈现幂律特性,而更高的张力水平则包括伸展线性(弹性)以及高度非线性拉伸区域。对于半柔性膜,在负框架张力下会发生从伸展构象到弯曲构象的转变。我们的分析表明,在零框架张力下,流体膜的皱缩转变在低弯曲刚度时既表现出临界行为特征,也表现出不连续转变特征。