首页> 外文期刊>Journal of contemporary physics >Gravitational and Thermocapillary Mechanisms of Hydrodynamic Motions in Liquid Crystals Induced by Laser with a Spatially Periodic Intensity Structure
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Gravitational and Thermocapillary Mechanisms of Hydrodynamic Motions in Liquid Crystals Induced by Laser with a Spatially Periodic Intensity Structure

机译:具有空间周期性强度结构的激光在液晶中引起水动力运动的重力和热毛细管机理

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摘要

A possibility of excitation of hydrodynamic convective motions of the Rayleigh–Benard and Marangoni type in isotropic liquids and nematic liquid crystals upon absorption of light with a spatially periodic intensity distribution is demonstrated theoretically and experimentally. The opportunity of control and the stability of convective motions are studied. Benard cells become unstable when the light intensity is high. These instabilities are of the thermal origin because the Prandtl number for the medium under study is considerably larger than unity. The competition between the gravitational and thermocapillary mechanisms of photohydrodynamic reorientation of nematic liquid crystal director is also studied. The reorientation of the molecules due to the thermocapillary mechanism causes an optical nonlinearity which is three orders of magnitude stronger than the well-known direct orientational optical nonlinearity.
机译:从理论上和实验上证明了在吸收具有空间周期性强度分布的光后,在各向同性液体和向列型液晶中激发瑞利-贝纳德和马兰戈尼型水动力对流运动的可能性。研究了控制的机会和对流运动的稳定性。当光强度高时,贝纳德细胞变得不稳定。这些不稳定性是由热引起的,因为所研究介质的普朗特数远大于一。还研究了向列型液晶指向矢的光流体动力学重新定向的重力和热毛细管机理之间的竞争。由于热毛细管机制而使分子重新取向,导致光学非线性比公知的直接取向光学非线性强三个数量级。

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