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Interplay of bloch waves and scattered waves in real photonic crystals

机译:真实光子晶体中的斑点波和散射波之间的相互作用

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Light propagates inside an ideal and infinite photonic crystal when the Bloch condition is satisfied and any allowed light wave is decomposed in a basis of propagating Bloch waves [1]. In real photonic crystals, light propagation is modified due to unavoidable fabrication-induced structural imperfections in size, positions, and permittivity of the building blocks, as well as the finite size of the crystal. The unavoidable deviations from perfect periodicity result in scattering [2, 3]. Here, we seek to understand the nature of waves inside a real photonic crystal since inevitable disorder plays a significant role in wave propagation.
机译:当满足布洛赫条件并且在传播的布洛赫波的基础上分解任何允许的光波时,光会在理想且无限的光子晶体内传播[1]。在真实的光子晶体中,由于不可避免的制造引起的结构块的尺寸,位置和介电常数以及晶体的有限尺寸的结构缺陷,光的传播会发生改变。完美周期不可避免的偏差会导致散射[2,3]。在这里,我们试图了解真实光子晶体内部的波的性质,因为不可避免的无序在波传播中起着重要作用。

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