首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Numerical methods for light propagation in large LC cells: a new approach
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Numerical methods for light propagation in large LC cells: a new approach

机译:大型LC单元中光传播的数值方法:一种新方法

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Accurate numerical methods for the propagation of light in large 3D samples with strong lateral variation of the director field require prohibitive amounts of time. We consider and compare a standard spectral method and the Finite Difference in Frequency Domain method, showing that the CPU time can be reduced by one or two orders of magnitude using a perturbation approach or a recently developed Reduced Order Method. The equations obtained are applied to liquid crystal cells with in-plane switching, illuminated by a large incoherent source. The developed formalism, based on numerically exact equations, is particularly suitable for treating magnetic or optically active media and for extending to such media the well known approximations based on the 4 * 4 (berreman) or 2 * 2 (Jones) matrices.
机译:在大型3D样本中,具有指向矢场横向强变化的光传播的精确数值方法需要耗费大量时间。我们考虑并比较了标准频谱方法和频域有限差分方法,结果表明,使用扰动方法或最近开发的降阶方法可以将CPU时间减少一两个数量级。将获得的方程式应用到具有大的非相干光源的面内切换液晶单元。基于数值精确方程式开发的形式主义特别适用于处理磁性或光学活性介质,以及将基于4 * 4(berreman)或2 * 2(Jones)矩阵的众所周知的近似方法扩展到此类介质。

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