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非极性四面体向列型液晶的宏观行为。

Macroscopic behavior of non-polar tetrahedratic nematic liquid crystals.

作者信息

Brand H R, Pleiner H

机构信息

Max-Planck-Institute for Polymer Research, Mainz, Germany.

出版信息

Eur Phys J E Soft Matter. 2010 Jan;31(1):37-50. doi: 10.1140/epje/i2010-10547-9. Epub 2010 Jan 27.

DOI:10.1140/epje/i2010-10547-9
PMID:20101516
Abstract

We discuss the symmetry properties and the macroscopic behavior of a nematic liquid crystal phase with D(2d) symmetry. Such a phase is a prime candidate for nematic phases made from banana-shaped molecules where the usual quadrupolar order coexists with octupolar (tetrahedratic) order. The resulting nematic phase is nonpolar. While this phase could resemble the classic D (infinityh) nematic in the polarizing microscope, it has many static as well as reversible and irreversible properties unknown to nonpolar nematics without octupolar order. In particular, there is a linear gradient term in the free energy that selects parity leading to ambidextrously helical ground states when the molecules are achiral. In addition, there are static and irreversible coupling terms of a type only met otherwise in macroscopically chiral liquid crystals, e.g. the ambidextrous analogues of Lehmann-type effects known from cholesteric liquid crystals. We also discuss the role of hydrodynamic rotations about the nematic director. For example, we show how strong external fields could alter the D(2d) symmetry, and describe the non-hydrodynamic aspects of the dynamics, if the two order structures, the nematic and the tetrahedratic one, rotate relative to each other. Finally, we discuss certain nonlinear aspects of the dynamics related to the non-commutativity of three-dimensional finite rotations as well as other structural nonlinear hydrodynamic effects.

摘要

我们讨论具有D(2d)对称性的向列型液晶相的对称性质和宏观行为。这样的相是由香蕉形分子构成的向列相的主要候选者,其中通常的四极序与八极(四面体)序共存。由此产生的向列相是非极性的。虽然这个相在偏光显微镜下可能类似于经典的D(∞h)向列相,但它具有许多非极性向列相所没有的静态以及可逆和不可逆性质,这些向列相没有八极序。特别是,在自由能中有一个线性梯度项,当分子是非手性时,它选择宇称导致左右旋螺旋基态。此外,还存在仅在宏观手性液晶中才会遇到的一种类型的静态和不可逆耦合项,例如从胆甾型液晶中已知的莱曼型效应的左右旋类似物。我们还讨论了围绕向列指向矢的流体动力学旋转的作用。例如,我们展示了强外场如何改变D(2d)对称性,并描述了动力学的非流体动力学方面,如果向列相和四面体相这两种有序结构相对于彼此旋转。最后,我们讨论了与三维有限旋转的非对易性以及其他结构非线性流体动力学效应相关的动力学的某些非线性方面。

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