Revignas Davide, Ferrarini Alberta
Department of Chemical Sciences, University of Padova Via Marzolo 1, 35131 Padova, Italy.
Phys Rev Lett. 2023 Jan 13;130(2):028102. doi: 10.1103/PhysRevLett.130.028102.
Since Onsager's seminal work, hard rods have been taken as a prototype of nematic liquid crystals, characterized by uniaxial order and a uniform director field as a ground state. Here, using Onsager theory to calculate the free energy in the presence of arbitrary deformations, we find that hard rod nematics have an intrinsic tendency to twist around their ordering axis (double twist), driven by a mechanism in which the orientational fluctuations of particles play a key role. The anisotropic hard core potential used here is arguably the simplest form of interaction able to originate spontaneous breaking of mirror symmetry in a 3D fluid. Our results are discussed in relation to the recent discovery of a double twisted ground state in cylindrically confined lyotropic chromonic liquid crystals.
自从昂萨格的开创性工作以来,硬棒一直被视为向列型液晶的原型,其特征是具有单轴有序性,且基态有均匀的指向矢场。在此,我们利用昂萨格理论计算任意形变下的自由能,发现硬棒向列相有一种围绕其有序轴扭转的内在倾向(双扭转),这是由一种粒子取向涨落起关键作用的机制驱动的。这里使用的各向异性硬核势可以说是能在三维流体中引发镜面对称自发破缺的最简单相互作用形式。我们结合最近在圆柱形受限溶致变色液晶中发现的双扭转基态对结果进行了讨论。