首页> 外文会议>Conference on MOEMS and Miniaturized Systems III, Jan 27-29, 2003, San Jose, California, USA >A Micromachined In-Plane Tunable Optical Filter Using Thermo-Optic Effect
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A Micromachined In-Plane Tunable Optical Filter Using Thermo-Optic Effect

机译:利用热光效应的微加工面内可调光学滤波器

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This paper presents, for the first time, a micromachined in-plane tunable optical filter (TOF) using thermo-optic effect for wavelength division multiplexed telecommunication. The TOFs are comprised of a Fabry-Perot silicon optical resonator formed between two distributed Bragg reflectors with high-reflectance based on silicon/air-gap pairs. The whole device was vertically fabricated using silicon deep reactive ion etching (DRIE). And input/output optical fibers were easily aligned along with the TOF structure on the substrate by exploiting in-plane fiber alignment. Tunability of the TOFs is experimentally achieved through thermal modulation of optical path length by heating the silicon resonator. As an input voltage increases, a notch of reflectance spectrum shifts to a longer wavelength with a tuning range of 9 nm and 3dB bandwidth of 2nm. The temperature of a silicon resonator was estimated to be about 93℃ for the tuning range.
机译:本文首次提出了一种利用热光效应进行波分复用电信的微加工面内可调光学滤波器(TOF)。 TOF由法布里-珀罗(Fabry-Perot)硅光谐振器组成,该光谐振器形成在两个分布的布拉格反射器之间,具有基于硅/气隙对的高反射率。整个器件使用硅深反应离子蚀刻(DRIE)垂直制造。并且,通过利用面内光纤对准,容易将输入/输出光纤与TOF结构一起对准在基板上。通过加热硅谐振器,通过光程长度的热调制,可以通过实验实现TOF的可调性。随着输入电压的增加,反射光谱的陷波将移至更长的波长,调谐范围为9 nm,3dB带宽为2nm。在调谐范围内,硅谐振器的温度估计约为93℃。

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