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Molecular Dynamics of Thermotropic Liquid Crystals: Anomalous relaxation dynamics of calamitic and discotic liquid crystals

机译:热致液晶的分子动力学:弛豫和盘状液晶的异常弛豫动力学

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摘要

Recent optical kerr effect (OKE) studies have demonstrated that orientational relaxation of rod-like nematogens exhibits temporal power law decay at intermediate times not only near the isotropic–nematic (I–N) phase boundary but also in the nematic phase. Such behaviour has drawn anudintriguing analogy with supercooled liquids. We have investigated both collective and single-particleudorientational dynamics of a family of model system of thermotropic liquid crystals using extensiveudcomputer simulations. Several remarkable features of glassy dynamics are on display including non-exponential relaxation, dynamical heterogeneity, and non-Arrhenius temperature dependence of the orientational relaxation time. Over a temperature range near the I–N phase boundary, the system behaves remarkably like a fragile glass-forming liquid. Using proper scaling, we construct the usualudrelaxation time versus inverse temperature plot and explicitly demonstrate that one can successfullyuddefine a density dependent fragility of liquid crystals. The fragility of liquid crystals shows audtemperature and density dependence which is remarkably similar to the fragility of glass forming supercooled liquids. Energy landscape analysis of inherent structures shows that the breakdown of the Arrhenius temperature dependence of relaxation rate occurs at a temperature that marks the onset of the growth of the depth of the potential energy minima explored by the system. A model liquid crystal, consisting of disk-like molecules, has also been investigated in molecular dynamics simulations for orientational relaxation along two isobars starting from the high temperature isotropic phase. The isobars have been so chosen that the phase sequence isotropic (I)–nematicud(N)–columnar (C) appears upon cooling along one of them and the sequence isotropic (I)–columnar(C) along the other. While the orientational relaxation in the isotropic phase near the I–N phase transition shows a power law decay at short to intermediate times, such power law relaxation is not observed in the isotropic phase near the I–C phase boundary. The origin of the power law decay inudthe single-particle second-rank orientational time correlation function (OTCF) is traced to the growthudof the orientational pair distribution functions near the I–N phase boundary. As the system settles into the nematic phase, the decay of the single-particle second-rank orientational OTCF follows a pattern that is similar to what is observed with calamitic liquid crystals and supercooled molecular liquids.
机译:最近的光学克尔效应(OKE)研究表明,棒状线虫的定向弛豫不仅在各向同性-向列相(I-N)的相界附近而且在向列相处均表现出时间幂律衰减。这种行为已经与过冷液体产生了有趣的类比。我们已经使用广泛的 udcomputer模拟研究了热致液晶模型系统系列的集体和单粒子非本构动力学。玻璃态动力学的几个显着特征被展出,包括非指数弛豫,动力学异质性和定向弛豫时间的非阿累尼乌斯温度依赖性。在接近I–N相边界的温度范围内,系统的行为非常类似于易碎的玻璃形成液体。使用适当的缩放比例,我们可以构建通常的松弛时间与温度的倒数关系图,并明确证明可以成功定义与密度相关的液晶脆性。液晶的脆性显示出对温度和密度的依赖性,这与形成过冷液体的玻璃的脆性非常相似。固有结构的能量景观分析表明,弛豫速率的阿伦尼乌斯温度依赖性破坏发生在标志着系统探索的势能最小值深度增长开始的温度下。还已经在分子动力学模拟中研究了由盘状分子组成的模型液晶,用于从高温各向同性相开始沿着两个等压线的取向弛豫。选择等压线时,各相线各向同性(I)–向列 ud(N)–列(C)沿冷却,而另一方各相各向同性(I)–columnar(C)。虽然I–N相变附近各向同性相的取向弛豫在短至中间时间处显示出幂律衰减,但在I–C相界附近的各向同性相中未观察到这种幂律弛豫。单粒子二级秩时间相关函数(OTCF)的幂律衰减的起源可追溯到I–N相边界附近的取向对分布函数的增长 ud。当系统稳定在向列相中时,第二级单粒子定向OTCF的衰减遵循类似于a族液晶和过冷分子液体所观察到的模式。

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    Jana Biman; Bagchi Biman;

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  • 年度 2009
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