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首页> 外文期刊>Journal of Applied Physics >Photonic bands in two-dimensional microplasma arrays. Ⅰ. Theoretical derivation of band structures of electromagnetic waves
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Photonic bands in two-dimensional microplasma arrays. Ⅰ. Theoretical derivation of band structures of electromagnetic waves

机译:二维微等离子体阵列中的光子带。 Ⅰ。电磁波能带结构的理论推导

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摘要

Two theoretical approaches appropriate for two-dimensional plasma photonic crystals reveal dispersions of propagating waves including photonic (electromagnetic) band gaps and multiflatbands. A modified plane-wave expansion method yields dispersions of collisional periodical plasmas, and the complex-value solution of a wave equation by a finite difference method enables us to obtain dispersions with structure effects in an individual microplasma. Periodical plasma arrays form band gaps as well as normal photonic crystals, and multiflatbands are present below the electron plasma frequency in the transverse electric field mode. Electron elastic collisions lower the top frequency of the multiflatbands but have little effect on band gap properties. The spatial gradient of the local dielectric constant resulting from an electron density profile widens the frequency region of the multiflatbands, as demonstrated by the change of surface wave distributions. Propagation properties described in dispersions including band gaps and flatbands agree with experimental observations of microplasma arrays.
机译:适用于二维等离子体光子晶体的两种理论方法揭示了传播波的色散,包括光子(电磁)带隙和多平坦带。改进的平面波扩展方法会产生碰撞周期等离子体的色散,并且通过有限差分法的波动方程的复值解使我们能够在单个微等离子体中获得具有结构效应的色散。周期性的等离子体阵列与正常的光子晶体一样形成带隙,并且在横向电场模式下,在电子等离子体频率以下存在多个平坦带。电子弹性碰撞降低了多平坦带的最高频率,但对带隙性能影响很小。由电子密度分布产生的局部介电常数的空间梯度使多平坦带的频率区域变宽,如表面波分布的变化所证明。在包括带隙和平坦带在内的分散体中描述的传播特性与微等离子体阵列的实验观察结果一致。

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