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Engineering defect modes in symmetry reduced 1D photonic crystal nanobeam waveguide

机译:对称还原一维光子晶体纳米束波导中的工程缺陷模式

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In this paper, nanobeam cavity studies were performed on low-symmetric 1D photonic crystals. An eligible comparison between low-symmetric structure and a regular cavity is held. Due to nature of the resonance, reduced symmetry is expected to decrease confined resonance field; however, authors focused on the tuning of the extra parameters arisen from degenerated symmetry and promising results are obtained. Quality factor enhancement with respect to varying structural parameters is observed. To the best of authors' knowledge, this is the first time that the cavity is enhanced with controlled low symmetric structures. Also, mode profile variation and spectral response shift due to structural parameters are analyzed. Results hold potential for further integrated photonic device research such as filtering, optical memory units, quantum cryptology.
机译:在本文中,对低对称一维光子晶体进行了纳米束腔研究。在低对称结构和规则腔之间进行了合格的比较。由于共振的性质,减少对称性可望减少有限的共振场。然而,作者专注于对由退化对称性产生的额外参数进行调整,并获得了可喜的结果。观察到关于变化的结构参数的品质因数提高。据作者所知,这是首次通过可控的低对称结构增强型腔。此外,分析了由于结构参数导致的模式轮廓变化和光谱响应偏移。研究结果为进一步的集成光子器件研究(例如滤波,光学存储单元,量子密码学)提供了潜力。

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