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Analysis of polarization transformations by a planar chiral array of complex-shaped particles

机译:平面形状复杂粒子的手性阵列的偏振变换分析

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Vectorial relations of field amplitudes are derived from the Lorentz lemma applied to electromagnetic fields at direct and reversed scenarios of a wave diffraction on a doubly-periodic planar array. Biorthogonality of polarization eigenstates of the waves propagating in opposite directions is shown with reference to a wave channel formed by an incident wave and a diffraction order. For a planar chiral array, an essential difference in polarization transformations of propagated waves is ascertained in the direct wave channel and in the reversed one. Numerical data are presented to demonstrate the polarization transformations by both transmitting and reflecting planar chiral arrays. A difference in polarization eigenstates inherent to a planar chiral array and a bulk chiral medium is noticed.
机译:场振幅的矢量关系是从在双周期平面阵列上波衍射的正向和反向情形下应用于电磁场的洛伦兹引理推导得出的。参照由入射波和衍射级形成的波道,示出了沿相反方向传播的波的偏振本征态的双正交性。对于平面手性阵列,在直接波通道和反向波通道中确定了传播波的偏振变换的本质区别。数值数据被用来证明通过透射和反射平面手性阵列的偏振变换。注意到平面手性阵列和本体手性介质固有的极化本征态的差异。

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