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Hydrodynamics of smectic-C liquid crystals: Field and flow induced instabilities in confined geometries

机译:近晶C液晶的流体动力学:有限几何中场和流引起的不稳定性

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Following the Ericksen-Leslie approach, we formulate a complete nonlinear macroscopic theory of the isothermal hydrodynamics of smectic-C liquid crystals. We assume an asymmetric stress tensor and incorporate the essential features of a hydrodynamic theory of a smectic phase, i.e., permeation and variations in layer spacing. Using Onsager's reciprocity relations, we find that entropy production is described by 16 viscosity coefficients and a permeation constant associated with the dissipative dynamics of the layered system. We study the reorientation dynamics of the c vector under the destabilizing influence of an external field. We stress that permeation is important and that transverse flows along and normal to the layers exist. We have also studied certain instabilities that can arise in shear hows. As a consequence of permeation, in Poiseuille flow with the layers parallel to the plates, we find that the length of the inlet section can be very large being many times the lateral dimension. When the layers are perpendicular to the plates, an analog of the nematic Hall effect is shown to exist even in the absence of an aligning external field. [References: 21]
机译:遵循Ericksen-Leslie方法,我们制定了近晶C液晶的等温流体力学的完整非线性宏观理论。我们假设应力张量不对称,并结合了近晶相流体力学理论的基本特征,即渗透和层间距的变化。使用Onsager的互易关系,我们发现熵的产生是由16个粘度系数和与分层系统的耗散动力学相关的渗透常数描述的。我们研究了在外场不稳定影响下c矢量的重新定向动力学。我们强调渗透很重要,并且存在沿各层且垂直于各层的横向流动。我们还研究了剪切方式中可能出现的某些不稳定性。由于渗透的结果,在泊埃流中各层平行于板的流动中,我们发现入口段的长度可能非常大,是横向尺寸的许多倍。当各层垂直于板时,即使没有对准的外场也存在向列霍尔效应的类似物。 [参考:21]

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