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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Modal propagation characteristics of em waves in ternary one-dimensional plasma photonic crystals
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Modal propagation characteristics of em waves in ternary one-dimensional plasma photonic crystals

机译:三元一维等离子体光子晶体中电磁波的模态传播特性

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摘要

We have theoretically studied the modal dispersion characteristics, group velocity, and effective group as well as phase index of refraction of ternary one-dimensional (1D) plasma photonic band gap (PBG) structure having periodic multilayers of three different materials in one unit cell. The dispersion characteristics related for such structure is derived by solving Maxwell wave equation based on principle of Kronig-Penny model. From the computed results we observe that the dispersion characteristics of such structure also show the frequency gap and cutoffs as found in (binary) one-dimensional plasma photonic crystal. The frequency gap is shown to become larger with the increase of plasma frequency as well as plasma width. It is seen that such structure provide additional degree of freedom to control dispersion characteristic, group velocity and effective index of refraction compared to conventional one-dimensional plasma photonic crystal.
机译:我们从理论上研究了在一个晶胞中具有三种不同材料的周期性多层的三元一维(1D)等离子体光子带隙(PBG)结构的模态色散特性,基团速度和有效基团以及折射率的相变指数。根据Kronig-Penny模型的原理,通过求解麦克斯韦波动方程,得出与这种结构有关的色散特性。从计算结果可以看出,这种结构的色散特性还显示出(二元)一维等离子体光子晶体中的频率间隙和截止频率。如图所示,随着等离子频率以及等离子宽度的增加,频率间隙变大。可以看出,与常规的一维等离子体光子晶体相比,这种结构提供了额外的自由度来控制色散特性,群速度和有效折射率。

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