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通过切割使热膜变硬。

Stiffening thermal membranes by cutting.

作者信息

Russell Emily R, Sknepnek Rastko, Bowick Mark

机构信息

ICERM, Box 1955, Brown University, Providence, Rhode Island 02912, USA.

School of Science and Engineering, University of Dundee, Dundee DD1 4HN, United Kingdom.

出版信息

Phys Rev E. 2017 Jul;96(1-1):013002. doi: 10.1103/PhysRevE.96.013002. Epub 2017 Jul 10.

Abstract

Two-dimensional crystalline membranes have recently been realized experimentally in systems such as graphene and molybdenum disulfide, sparking a resurgence in interest in their statistical properties. Thermal fluctuations can significantly affect the effective mechanical properties of properly thermalized membranes, renormalizing both bending rigidity and elastic moduli so that in particular they become stiffer to bending than their bare bending rigidity would suggest. We use molecular dynamics simulations to examine how the mechanical behavior of thermalized two-dimensional clamped ribbons (cantilevers) depends on their precise topology and geometry. We find that a simple slit smooths roughness as measured by the variance of height fluctuations. This counterintuitive effect may be due to the counterposed coupling of the lips of the slit to twist in the intact regions of the ribbon.

摘要

二维晶体膜最近已在诸如石墨烯和二硫化钼等系统中通过实验实现,这引发了人们对其统计特性兴趣的再度兴起。热涨落会显著影响适当热化后的膜的有效力学性能,使弯曲刚度和弹性模量都发生重整化,特别是使得它们相较于其裸弯曲刚度所表明的情况而言,对弯曲变得更具刚性。我们使用分子动力学模拟来研究热化后的二维夹紧条带(悬臂梁)的力学行为如何取决于其精确的拓扑结构和几何形状。我们发现,一个简单的狭缝会使由高度涨落方差测量的粗糙度变得平滑。这种违反直觉的效应可能是由于狭缝边缘与条带完整区域中的扭转之间的反向耦合所致。

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