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Effects Of Disorder On The Frequency And Field Of Photonic-crystal Cavity Resonators

机译:紊乱对光子晶体腔谐振器频率和场的影响

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In recent years the application of 2-Dimensional (2D) metallic Photonic-Crystal (PC) structures to high-power microwave devices, such as particle accelerators and gyrotrons, has gained increased interest. In this paper we focus on the effect disorder has on the resonant frequency and peak electric field in the defect site of a 2D PC structure. For disorders up to a maximum of 15% variation in position and radius, we found that disorder applied to the innermost rods surrounding the defect site dominates in determining the peak field and resonant frequency of the structure. We also show that small disorder (~1%) can lead to an increase in peak field in certain cases due to structure optimization. We find that increasing levels of disorder lead to a decreasing average peak field for all structures. Whereas the mean resonant frequency remains constant for increasing disorder while the standard deviation increases. We then develop an understanding for this behaviour in terms of frequency detuning and mode confinement.
机译:近年来,二维(2D)金属光子晶体(PC)结构在高功率微波设备(例如粒子加速器和回旋管)中的应用引起了越来越多的兴趣。在本文中,我们将重点放在二维PC结构缺陷部位的共振频率和峰值电场上的无序效应上。对于位置和半径最大变化不超过15%的疾病,我们发现施加到围绕缺陷部位的最里面的棒的疾病在确定结构的峰值场和共振频率方面占主导地位。我们还显示,在某些情况下,由于结构优化,小故障(约1%)会导致峰场增加。我们发现,无序水平的提高导致所有结构的平均峰场减小。对于增加的无序度,平均共振频率保持恒定,而标准偏差增加。然后,我们从频率失谐和模式限制方面了解这种行为。

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