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Generalized nematohydrodynamic boundary conditions with application to bistable twisted nematic liquid-crystal displays

机译:广义的线流体动力学边界条件及其在双稳态扭曲向列液晶显示器中的应用

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摘要

Parallel to the highly successful Ericksen-Leslie hydrodynamic theory for the bulk behavior of nematic liquid crystals (NLCs), we derive a set of coupled hydrodynamic boundary conditions to describe the NLC dynamics near NLC-solid interfaces. In our boundary conditions, translational flux (flow slippage) and rotational flux (surface director relaxation) are coupled according to the Onsager variational principle of least energy dissipation. The application of our boundary conditions to the truly bistable π -twist NLC cell reveals a complete picture of the dynamic switching processes. It is found that the thus far overlooked translation-rotation dissipative coupling at solid surfaces can accelerate surface director relaxation and enhance the flow rate. This can be utilized to improve the performance of electro-optical nematic devices by lowering the required switching voltages and reducing the switching times. © 2008 The American Physical Society.
机译:平行于向列型液晶(NLC)的整体行为的非常成功的Ericksen-Leslie流体力学理论,我们导出了一组耦合的流体动力学边界条件来描述NLC-固体界面附近的NLC动力学。在我们的边界条件下,平移通量(流动滑移)和旋转通量(表面指向矢松弛)根据最小能量耗散的Onsager变分原理耦合。将我们的边界条件应用到真正的双稳态π扭曲NLC单元中,可以揭示动态切换过程的完整情况。发现迄今为止在固体表面上被忽视的平移-旋转耗散耦合可以加速表面指向矢的松弛并提高流速。通过降低所需的开关电压并减少开关时间,可以将其用于改善电光向列设备的性能。 ©2008美国物理学会。

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