Balchunas Andrew, Jia Leroy L, Zakhary Mark J, Robaszewski Joanna, Gibaud Thomas, Dogic Zvonimir, Pelcovits Robert A, Powers Thomas R
The Martin Fisher School of Physics, Brandeis University, 415 South Street, Waltham, Massachusetts 02454, USA.
Division of Applied Mathematics, Brown University, Providence, Rhode Island 02912, USA.
Phys Rev Lett. 2020 Jul 3;125(1):018002. doi: 10.1103/PhysRevLett.125.018002.
We demonstrate that an achiral stretching force transforms disk-shaped colloidal membranes composed of chiral rods into twisted ribbons with handedness opposite the preferred twist of the rods. Using an experimental technique that enforces torque-free boundary conditions we simultaneously measure the force-extension curve and the ribbon shape. An effective theory that accounts for the membrane bending energy and uses geometric properties of the edge to model the internal liquid crystalline degrees of freedom explains both the measured force-extension curve and the force-induced twisted shape.
我们证明,一个非手性拉伸力可将由手性棒组成的盘状胶体膜转变为具有与棒的首选扭转方向相反的手性的扭曲带。通过一种施加无扭矩边界条件的实验技术,我们同时测量了力-伸长曲线和带的形状。一种考虑膜弯曲能量并利用边缘几何特性来模拟内部液晶自由度的有效理论,既解释了测得的力-伸长曲线,也解释了力诱导的扭曲形状。