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通过集成光吸收器实现的基于硅微环的光热可调谐光分插复用滤波器

Photothermally tunable silicon-microring-based optical add-drop filter through integrated light absorber.

作者信息

Chen Xi, Shi Yuechun, Lou Fei, Chen Yiting, Yan Min, Wosinski Lech, Qiu Min

出版信息

Opt Express. 2014 Oct 20;22(21):25233-41. doi: 10.1364/OE.22.025233.

Abstract

An optically pumped thermo-optic (TO) silicon ring add-drop filter with fast thermal response is experimentally demonstrated. We propose that metal-insulator-metal (MIM) light absorber can be integrated into silicon TO devices, acting as a localized heat source which can be activated remotely by a pump beam. The MIM absorber design introduces less thermal capacity to the device, compared to conventional electrically-driven approaches. Experimentally, the absorber-integrated add-drop filter shows an optical response time of 13.7 μs following the 10%-90% rule (equivalent to a exponential time constant of 5 μs) and a wavelength shift over pump power of 60 pm/mW. The photothermally tunable add-drop filter may provide new perspectives for all-optical routing and switching in integrated Si photonic circuits.

摘要

实验展示了一种具有快速热响应的光泵浦热光(TO)硅环型分插复用滤波器。我们提出,金属-绝缘体-金属(MIM)光吸收器可集成到硅TO器件中,作为一种可由泵浦光束远程激活的局部热源。与传统的电驱动方法相比,MIM吸收器设计给器件引入的热容量更小。实验中,集成吸收器的分插复用滤波器按照10%-90%规则显示出13.7 μs的光响应时间(相当于5 μs的指数时间常数),以及在泵浦功率作用下60 pm/mW的波长偏移。这种光热可调分插复用滤波器可为集成硅光子电路中的全光路由和开关提供新的视角。

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