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Dive into the research topics where Wei Huai is active.

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Featured researches published by Wei Huai.


Chinese Physics | 2007

The system of L-band 2×10 Gb/s WDM transmission over conventional single mode fibre with 600 km by chirped fibre Bragg gratings dispersion compensation

Yan Feng-Ping; Tong Zhi; Wei Huai; Pei Li; Ning Tigang; Fu Yong-Jun; Zheng Kai; Wang Lin; Li Yi-Fan; Gong Tao-Rong; Jian Shui-sheng

A chirped fibre Bragg grating according to ITU-T suggested L-band (2nd channel λ1 = 1570.83 nm; 80th channel λ2 = 1603.57 nm) with more than 1800 ps/nm single channel dispersion compensation is presented in this paper, of which the cladding mode loss, the delay curve ripple and the power fluctuation of the reflected spectrum are less than 0.5 dB, 50 ps and 0.25 dB, respectively. With this new FBG as dispersion compensation device, a 2 × 10 Gb/s wavelength division multiplexing (WDM) L-band transmission of 600 km based on conventional single mode fibre (G.652 fibre) is performed without forward error correction. The bit error rate (BER) is less than 10−12 and the power penalties of the 2nd and 80th channel of L-band are 1.8 dB and 2.0 dB, respectively.


Chinese Physics Letters | 2006

Ultra-Long Haul L-Band WDM Transmission over a Standard Single-Mode Fibre Loop Using DCF+CFBG Hybrid Dispersion Compensation

Tong Zhi; Jian Shui-sheng; Wang Guang-Quan; Cen Hong; Li Juhao; Zheng Lei; Chen Zhangyuan; Wang Ziyu; Zhu Lixin; Xu Anshi; Huang Guang-ming; Zhu Ya-Ming; Wei Huai; Ning Tigang; Liu Yan; Tan Zhongwei

We demonstrate a 10.7 Gb/s-line-rate L-band wavelength-division-multiplexer (WDM) loop transmission over a 1890-km standard single-mode fibre (SSMF) with a 100-km amplifier spacing as well as non-return-to-zero (NRZ) format. The dispersion compensating fibre (DCF) plus chirped fibre Bragg grating (CFBG) is employed for hybrid inline dispersion compensation. The power penalty of each channel is less than 3 dB after three-loop transmission. The experimental results show that high-performance CFBGs can be successfully used in ultra-long haul (>1000 km) WDM systems. We also point out that the all-CFBG compensation scheme is not suitable for re-circulating loop transmissions.


Chinese Physics | 2007

Design and fabrication of Panda-type erbium-doped polarization-maintaining fibres

Zheng Kai; Chang De-Yuan; Fu Yong-Jun; Wei Huai; Wei Yan; Yan Feng-Ping; Lou Shu-Qin; Ning Tigang; Jian Wei; Jian Shui-sheng

To obtain the stable operation of erbium-doped fibre laser, the simple and ideal technology is adopted by use of the erbium doped polarization maintaining fibre (EDPMF). The design criteria of the Panda-type EDPMF are presented, which take into account the cutoff wavelength, mode field diameter, modal birefringence and background loss. Four groups of optimum structural parameter combinations are determined in terms of the design criteria. Two kinds of the Panda-type EDPMFs are selected to be fabricated. The fabrication process and the parameter control of the Panda-type EDPMFs are presented in detail. Their refractive index profiles, birefringence and absorption spectra are experimentally investigated. The absorption coefficient of the EDPMF, whose core is co-doped with Bi, Ga, Al and Ge, is about 57.9 dB/m at 1.53 μm. Co-doping Bi, Ga and Al can greatly increase the erbium concentration in the silica-based fibre. The high birefringence is obtained for the Panda-type EDPMF. The group birefringence of the EDPMF, whose outer cladding diameter is 125 μm, is about 4.8×10−4.


Science China-technological Sciences | 2008

Study on pure silica core optical fibers

Li Jian; Zheng Kai; Chang De-Yuan; Wei Huai; Ning Tigang; Fu Yong-Jun; Mao Xiang-Qiao; Yan Feng-Ping; Jian Wei; Jian Shui-sheng


Archive | 2009

High stability mono-wavelength output optical fiber laser based on polarization-maintaining erbium-doped fiber

Yan Feng-Ping; Mao Xiang-Qiao; Wang Lin; Fu Yong-Jun; Wei Huai; Zheng Kai; Gong Tao-Rong; Liu Peng; Tao Peilin; Jian Shui-sheng


2008 Asia Optical Fiber Communication & Optoelectronic Exposition & Conference | 2008

Fabrication and characteristics of Yb 3+ -doped silica optical fibers

Wang Jing; Li Jian; Liu Peng; Mao Xiang-Qiao; Wang Lin; Liu Li-Song; Peng Jian; Zhang ChenFang; Zheng Kai; Wei Huai; Fu Yong Jun; Yan Feng-Ping; Ning Tigang; Jian Wei


Acta Optica Sinica | 2012

Theoretical and Experimental Investigation of Fiber Bragg Gratings Written in Multilayer Single Mode Fibers

Zheng Jingjing; Wen Yinghong; Qi Chunhui; Pei Li; Wei Huai; Ning Tigang; Jian Shui-sheng


Archive | 2009

Investigation of co-doping Al 3+ in ytterbium-doped silica-based fiber

Yan Feng-Ping; Wang Lin; Wei Huai; Fu Yong-Jun; Jian Wei; Zheng Kai; Mao Xiang-Qiao; Li Jian; Liu Li-Song; Peng Jian; Jian Shui-sheng


Archive | 2009

Tm 3+ doped cladding pumped silica optic fiber laser

Yan Feng-Ping; Wei Huai; Fu Yong-Jun; Wang Lin; Zheng Kai; Mao Xiang-Qiao; Liu Peng; Peng Jiang; Liu Li-Song; Jian Shui-sheng


Archive | 2009

Study on the performance of stress area mismatched Panda polarization-maintaining fiber

Yan Feng-Ping; Wei Yan; Fu Yong-Jun; Wei Huai; Gong Tao-Rong; Wang Lin; Li Yi-Fan; Liu Peng; Liu Yang; Tao Peilin; Qu Mei-Xia; Jian Shui-sheng

Collaboration


Dive into the Wei Huai's collaboration.

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Jian Shui-sheng

Beijing Jiaotong University

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Fu Yong-Jun

Beijing Jiaotong University

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Yan Feng-Ping

Beijing Jiaotong University

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Zheng Kai

Beijing Jiaotong University

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Ning Tigang

Beijing Jiaotong University

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Wang Lin

Beijing Jiaotong University

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Jian Wei

Beijing Jiaotong University

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Mao Xiang-Qiao

Beijing Jiaotong University

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Chang De-Yuan

Beijing Jiaotong University

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Liu Peng

Beijing Jiaotong University

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