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Shuisheng Jian
Researcher at Beijing Jiaotong University
Publications - 482
Citations - 4402
Shuisheng Jian is an academic researcher from Beijing Jiaotong University. The author has contributed to research in topics: Fiber Bragg grating & Optical fiber. The author has an hindex of 29, co-authored 482 publications receiving 3585 citations.
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Journal Article
Performance of optical amplifier employing silica host magnesium-aluminum-germanium co-doped erbium-doped fiber
TL;DR: In this article, two silica host EDFs with different Mg concentrations have been fabricated and the performance characteristics including absorption spectrum and gain are measured and analyzed, including absorption coefficients of fibers A and B are 13.3 and 14.3 dB/m respectively at wavelength of 1532 nm.
Proceedings ArticleDOI
40Gbps NRZ transmitted over 500km based on broadband dispersion compensation CFBG
Jihong Cao,Muguang Wang,Jianyong Zhang,Feng Zhang,Xi Qin,Yong Chen,Bo Lv,Dan Lu,Ming Chen,Bin Li,Zhongwei Tan,Shuisheng Jian +11 more
TL;DR: Using broadband dispersion compensation CFBGs, over 500km-40Gbps NRZ transmission system on G.652 fiber was demonstrated without electric regenerator, FEC and Raman amplifier.
Journal ArticleDOI
Study on PMD of conventional single mode fiber transmitting system with FBG for dispersion compensation
TL;DR: In this article, the maxim tolerance of polarization-mode dispersion in transmission systems at different rates is analyzed for the first time, and the results show that PMD compensation in the 10-Gb/s transmission system is not necessary, but the PMD must be compensated in the 40-gbps transmission system.
Proceedings ArticleDOI
Dynamic PMD compensation for 160Gbit/s OTDM systems
Tangjun Li,Muguang Wang,Shuisheng Jian,Fengbin Yan,Fengyi Wu,Honggang Wu,Jiao Yang,Yong Chen,Jihong Cao,Feng Zhang,Huai Wei +10 more
TL;DR: By using thin membrane plating technology in collimating lens, a 160Gbit/s time-division multiplexer basing on the combination of fiber and space structure method is manufactured, which has such features: polarization insensitivity, very short coherence length, high time-delay accuracy, and excellent temperature stability.
Proceedings ArticleDOI
All-fiber resonator fiber optic gyroscope (R-FOG) using a spliceless phase-modulation fiber resonator with 90-deg polarization rotation in the lapped coupler
TL;DR: In this article, an experimental demonstration of an all-fiber resonator optic gyroscope employing a spliceless PM-fibre resonator with 90 degree(s) polarization rotation in the lapped coupler is presented.