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[期刊论文] 作者:QiangBian,ZhangqiSong,YuzhongChen,XueliangZhang, 来源:ChineseOpticsLetters 年份:2017
We propose a compensation technique based on pulse reference for intensity-modulated optical fiber sensors that can compensate the power fluctuation of the light source, the change of optical components transmission loss, and the coupler sp......
[期刊论文] 作者:ZhangqiSong,YangYu,XueliangZhang,ZhengtongWei,ZhouMeng, 来源:ChineseOpticsLetters 年份:2014
An optical microfiber phase modulator (OMPM) directly driven with low-power light is presented. Phase modulation response of OMPM is theoretically analyzed. A 10-mm optical microfiber (OM), tapered from conventional single-mode fiber, is in......
[期刊论文] 作者:ZhengtongWei,ZhangqiSong,XueliangZhang,YangYu,ZhouMeng, 来源:ChineseOpticsLetters 年份:2013
Optical microfibers (OMs) are good alternatives in the field of sensing. In this letter, a simple and effective miniature temperature sensor based on OM is proposed and experimentally verified. Using pure water and fiber coating as the OM c......
[期刊论文] 作者:ZhengtongWei,NuanJiang,ZhangqiSong,XueliangZhang,ZhouMeng, 来源:ChineseOpticsLetters 年份:2013
A method to fabricate fiber Bragg grating (FBG) in an optical microfiber (OM) from a conventional photosensitive fiber is proposed in this letter. The cladding of a conventional photosensitive fiber is etched to 17 \mu m. The etched fiber i......
[期刊论文] 作者:YangYu,XueliangZhang,ZhangqiSong,ZhengtongWei,ZhouMeng, 来源:ChineseOpticsLetters 年份:2014
The backscattering characteristics of optical microfiber (OM) are experimentally studied by controlling heating temperature and cooling method during the OM fabrication process. OM samples with various reflectances from 0.1% to 1% are achie......
[期刊论文] 作者:QiangBian,ZhangqiSong,DongyuSong,XueliangZhang,BingshengLi,ZhouMeng,YangYu, 来源:ChineseOpticsLetters 年份:2018
We modify the pulse-reference-based compensation technique and propose a low-noise and highly stable optical fiber temperature sensor based on a zinc telluride film-coated fiber tip. The system noise is measured to be 0.0005 dB, which makes......
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