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A 2D finite difference/Finite Element analysis of reconfigurable mm-wave circuits in the presence of Nematic Liquid Crystals

机译:向列型液晶存在下可重构毫米波电路的二维有限差分/有限元分析

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A robust 2-D formulation for the electrical characterization of Nematic Liquid Crystals (N-LCs) under DC biasing conditions for use in reconfigurable mm-wave circuits is proposed. The finite difference (FD) method is first implemented to solve Poisson's equation in the domain of interest in order to obtain the governing DC electric field, which affects the local properties of the anisotropic material. Then, the nonlinear Euler-Lagrange differential equation, governing the orientation of the directors, is solved using a FD scheme with relaxation. Once the N-LC layer is characterized, a vector Finite Element (FE) code is used to obtain the modal propagation characteristics of a guiding structure. Tunability of the N-LC at mm-wave frequencies is illustrated for the particular geometry under a low DC bias voltage.
机译:提出了一种稳健的二维配方,用于在直流偏置条件下向列液晶(N-LC)的电学表征,用于可重构毫米波电路。首先采用有限差分(FD)方法在感兴趣的区域内求解泊松方程,以获得控制直流电场,该电场会影响各向异性材料的局部特性。然后,使用带松弛的FD方案求解控制指向矢方向的非线性Euler-Lagrange微分方程。对N-LC层进行特征化后,即可使用矢量有限元(FE)码获得引导结构的模态传播特性。说明了在低直流偏置电压下针对特定几何形状的N-LC在毫米波频率下的可调谐性。

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