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基于硅线波导的高Q因子磷化铟光子晶体纳米束腔。

High Q factor InP photonic crystal nanobeam cavities on silicon wire waveguides.

作者信息

Crosnier Guillaume, Sanchez Dorian, Bazin Alexandre, Monnier Paul, Bouchoule Sophie, Braive Rémy, Beaudoin Grégoire, Sagnes Isabelle, Raj Rama, Raineri Fabrice

出版信息

Opt Lett. 2016 Feb 1;41(3):579-82. doi: 10.1364/OL.41.000579.

Abstract

High-quality (Q) factor indium phosphide (InP)-based 1D photonic crystal nanobeam cavities are fabricated on silicon on insulator waveguides. Through the optimization of the fabrication process, the intrinsic Q factor of these fully encapsulated nanocavities is demonstrated to attain values higher than 100,000. Experimental and numerical investigations are carried out on the impact, on the Q factor, of the strength of the evanescent wave coupling between the cavity and the waveguide. We reveal that this coupling can result in a modification of the electromagnetic field distribution in the resonant mode, which gives rise up to a factor 4 reduction in the intrinsic Q factor for the structures under study.

摘要

基于磷化铟(InP)的高品质(Q)因子一维光子晶体纳米束腔在绝缘体上硅波导上制备而成。通过优化制造工艺,这些完全封装的纳米腔的本征Q因子被证明可达到高于100,000的值。针对腔与波导之间倏逝波耦合强度对Q因子的影响进行了实验和数值研究。我们发现这种耦合会导致谐振模式下电磁场分布的改变,这使得所研究结构的本征Q因子降低了4倍。

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