Dhakal Subas, Solis Francisco J, Olvera de la Cruz Monica
Department of Materials Science, Northwestern University, Evanston, Illinois 60208, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Jul;86(1 Pt 1):011709. doi: 10.1103/PhysRevE.86.011709. Epub 2012 Jul 23.
Recent experiments have shown that defect conformations in spherical nematic liquid crystals can be controlled through variations of temperature, shell thickness, and other environmental parameters. These modifications can be understood as a result of the induced changes in the effective elastic constants of the system. To characterize the relation between defect conformations and elastic anisotropy, we carry out Monte Carlo simulations of a nematic on a spherical surface. As the anisotropy is increased, the defects flow from a tetrahedral arrangement to two coalescing pairs and then to a great circle configuration. We also analyze this flow using a variational method based on harmonic configurations.
最近的实验表明,通过改变温度、壳层厚度和其他环境参数,可以控制球形向列型液晶中的缺陷构象。这些变化可以理解为系统有效弹性常数的诱导变化的结果。为了表征缺陷构象与弹性各向异性之间的关系,我们对球形表面上的向列型液晶进行了蒙特卡罗模拟。随着各向异性的增加,缺陷从四面体排列流向两个合并对,然后流向大圆构型。我们还使用基于调和构型的变分方法分析了这种流动。