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Effective dielectric tensor of deformed-helix ferroelectric liquid crystals with subwavelength pitch and large tilt angle

机译:具有亚波长间距和大倾斜角的变形螺旋铁电液晶的有效介电张量

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Short pitch deformed helix ferroelectric liquid crystals have numerous applications as active materials in displays, optical telemetry, and biomedical devices. In this paper, we derive convenient analytical formulas to calculate the effective dielectric tensor of these materials beyond the space average approximation. By comparison with exact numerical calculations, we show that our formulas are remarkably accurate in predicting optical properties in virtually all practical situations, including the important case of large tilt angles, where the space average approximation breaks down. We also present a comparison between the two complementary approaches of expanding the mesoscopic dielectric tensor versus the mesoscopic transfer matrix, by deriving an expression for the effective transfer matrix as an infinite expansion and explicitly calculating the corresponding effective dielectric tensor for the first time. Our results demonstrate that both methods give accurate predictions when two-photon scattering terms are taken into account.
机译:短间距变形螺旋铁电液晶在显示器,光学遥测和生物医学设备中具有许多应用作为有源材料。在本文中,我们推出了方便的分析公式,以计算这些材料的有效介电张量,超过空白平均近似。通过与精确的数值计算进行比较,我们表明我们的公式在几乎所有实际情况下预测光学性质方面非常准确,包括大倾斜角度的重要情况,其中空平均近似断裂。我们还通过导出有效转移矩阵作为无限膨胀的表达,并在第一次明确计算相应的有效电介质张量并明确计算相应的有效电介质张量的表达式来展示两种互介电张量与介质转移矩阵之间的两个互补方法之间的比较。我们的结果表明,当考虑到两光子散射术语时,两种方法都提供了准确的预测。

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