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Molecular theory of nematic liquid crystals viewed as effect of collective excitation in ferromagnetic systems

机译:向列液晶的分子理论被认为是铁磁系统中集体激发的作用

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We develop a microscopic theory of the nematic phase with consideration of the effect of the collective excitation on properties of nematic liquid crystals. The model is based on the Heisenberg's exchange model of the ferromagnetic materials. Since the orientation of the molecular long axis and the angular momentum of the molecule rotating around its long axis have the same direction, operators can be introduced to research the nematic liquid crystals. Using the lattice model and the Holstein-Primakoff transformation, the Hamiltonian of the system can be obtained, which has the same form as that of the ferromagnetic substance. The relation between the order parameter and reduced temperature can be gotten. It is in good agreement with the experimental results in the low temperature region, the accordance is better than that of the molecular field theory and the computer simulation. In high temperature region close to the transition point, by considering the effect of the higher-order terms in the Hamiltonian, theoretical prediction is in better agreement with the experiment. That indicates the many-body effect is important to nematic liquid crystals.
机译:考虑到集体激发对向列液晶性能的影响,我们发展了向列相的微观理论。该模型基于铁磁性材料的海森堡交换模型。由于分子长轴的方向和绕其长轴旋转的分子的角动量具有相同的方向,因此可以引入算子来研究向列液晶。使用晶格模型和Holstein-Primakoff变换,可以获得系统的哈密顿量,该哈密顿量具有与铁磁物质相同的形式。可以获得阶数参数与降低的温度之间的关系。与低温区的实验结果吻合较好,其一致性优于分子场理论和计算机模拟。在接近转变点的高温区域,通过考虑高阶项在哈密顿量中的作用,理论预测与实验更加吻合。这表明多体效应对向列液晶很重要。

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