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Domain growth in cholesteric blue phases: Hybrid lattice Boltzmann simulations

机译:胆甾蓝相中的畴生长:混合晶格玻尔兹曼模拟

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Here we review a hybrid lattice Boltzmann algorithm to solve the equations of motion of cholesteric liquid crystals. The method consists in coupling a lattice Boltzmann solver for the Navier-Stokes equation to a finite difference method to solve the dynamical equations governing the evolution of the liquid crystalline order parameter. We apply this method to study the growth of cholesteric blue phase domains, within a cholesteric phase. We focus on the growth of blue phase II and on a thin slab geometry in which the domain wall is flat. Our results show that, depending on the chirality, the growing blue phase is either BPII with no or few defects, or another structure with hexagonal ordering. We hope that our simulations will spur further experimental investigations on quenches in micron-size blue phase samples. The computational size that our hybrid lattice Boltzmann scheme can handle suggests that large scale simulations of new generation of blue phase liquid crystal devices are within reach.
机译:在这里,我们回顾一下混合格子Boltzmann算法,以解决胆甾型液晶的运动方程。该方法包括将用于Navier-Stokes方程的晶格Boltzmann解算器与有限差分方法耦合,以求解控制液晶阶数参数演化的动力学方程。我们应用这种方法来研究胆甾相内胆甾蓝相域的生长。我们专注于蓝相II的生长以及薄薄的平板几何形状,其中畴壁是平坦的。我们的结果表明,取决于手性,生长的蓝相要么是没有缺陷或几乎没有缺陷的BPII,要么是具有六边形有序的另一种结构。我们希望我们的模拟能够刺激对微米级蓝相样品中淬灭的进一步实验研究。我们的混合晶格Boltzmann方案可以处理的计算量表明,新一代蓝相液晶器件的大规模仿真是可以实现的。

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