周期性中断的光子带隙结构:理论与应用

L. Pajewski, G. Schettini
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引用次数: 0

摘要

光子带隙(PBG)材料中缺陷的引入打破了它的周期性,产生了电磁场的界面态,其频率在阻带内,表现为结构的透射响应的尖峰。我们利用全波方法研究了多重周期性中断存在下PBGs的性质。结果显示,在TE和TM极化下,传输效率是相关参数的函数。讨论了如何控制阻带内传输峰的选择性和位置。我们证明了也可以获得通带滤波行为。
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Photonic Band-Gap Structures with Periodicity Interruptions: Theory and Applications
The introduction of defects in a photonic band-gap (PBG) material breaks its periodicity, and produces interface states of the electromagnetic field, at frequencies within the stop-bands, manifested by sharp peaks in the transmission response of the structure. We study PBGs properties in the presence of multiple periodicity interruptions, by using a full-wave approach. Results are presented, both for TE and TM polarizations, showing the transmission efficiencies as a function of the involved parameters. We discuss how the selectivity and the position of the transmission peaks inside the stop-band can be controlled. We show that a pass-band filtering behavior can also be obtained.
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