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多模光子晶体纳米光束腔中空间模式的控制

Controlling of spatial modes in multi-mode photonic crystal nanobeam cavity.

作者信息

Sun Fujun, Yang Yan, Li Zhihua, Yang Daquan, Tian Huiping, Lee Chengkuo

出版信息

Opt Express. 2022 Jun 6;30(12):21764-21773. doi: 10.1364/OE.460199.

Abstract

We numerically and experimentally present the characteristics of disturbed spatial modes (air mode and dielectric mode) in multi-mode photonic crystal nanobeam cavity (PCNC) in the mid-infrared wavelength range. The results show that the resonance wavelength of the spatial modes can be controlled by modifying the size, period and position of the central periodical mirrors in PCNC, achieving better utilization of the spectrum resource. Additionally, side coupling characteristics of PCNC supporting both air and dielectric modes are investigated for the first time. This work serves as a proof of design method that the spatial modes can be controlled flexibly in PCNC, paving the way to achieve integrated multi-function devices in a limited spectrum range.

摘要

我们通过数值模拟和实验展示了中红外波长范围内多模光子晶体纳米光束腔(PCNC)中受扰空间模式(空气模式和介质模式)的特性。结果表明,通过改变PCNC中中心周期镜的尺寸、周期和位置,可以控制空间模式的共振波长,从而更好地利用光谱资源。此外,首次研究了支持空气模式和介质模式的PCNC的侧向耦合特性。这项工作证明了在PCNC中可以灵活控制空间模式的设计方法,为在有限光谱范围内实现集成多功能器件铺平了道路。

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