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Molecular dynamics simulations of a ferroelectric nematic liquid under shear flow

机译:剪切流下铁电向列液体的分子动力学模拟

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We perform nonequilibrium molecular dynamics simulations to examine the change in orientational order of a ferroelectric nematic liquid crystal under shear flow, specifically planar Couette flow. The orientational order is found to decrease with increasing shear rate. This drop in orientational order is not due to structural changes but is rather a result of the director dynamics being flow unstable. Employing both nonequilibrium and equilibrium molecular dynamics with the director orientation fixed, we determine the shear and twist viscosities which relate the pressure tensor to the shear or strain rate tensor in a nematic liquid crystal under flow. The Miesowicz viscosities are then obtained from linear combinations of the shear and twist viscosities. The short-range spatial structure of the ferroelectric nematic liquid crystal is similar to that of a ferroelectric tetragonal I lattice. The relative magnitudes of the Miesowicz viscosities can be understood by examining the shear stress response of this lattice to a shear deformation. (C) 2002 American Institute of Physics. [References: 47]
机译:我们执行非平衡分子动力学模拟,以检查铁电向列液晶在剪切流(特别是平面库埃特流)下的取向顺序变化。发现取向顺序随着剪切速率的增加而降低。定向顺序的下降不是由于结构变化,而是导流器动力学不稳定的结果。利用定向方向固定的非平衡和平衡分子动力学,我们确定了剪切和扭曲粘度,它们将流向列液晶中的压力张量与剪切或应变率张量相关联。然后,由剪切和扭曲粘度的线性组合获得米氏粘度。铁电向列液晶的短程空间结构类似于铁电四方I晶格的短程空间结构。 Miesowicz粘度的相对大小可以通过检查该晶格对剪切变形的剪切应力响应来理解。 (C)2002美国物理研究所。 [参考:47]

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