Shen Xiangwei
Beijing University of Posts and Telecommunications
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Featured researches published by Shen Xiangwei.
Chinese Physics Letters | 2012
Yuan Jin-Hui; Sang Xinzhu; Yu Chong-Xiu; Shen Xiangwei; Wang Kuiru; Yan Binbin; Han Ying; Zhou Gui-Yao; Hou Lan-Tian
Blue-shifted dispersive waves (DWs) are efficiently generated from the red-shifted solitons by coupling the 120 fs pulses into the fundamental mode of the multi-knots of a photonic crystal fiber cladding. When the femtosecond pulses at the wavelength of 825 nm and the average power of 300 mW are coupled into knots 1–3, the conversion efficiency ηDW of 32% and bandwidth BDW of 50 nm are obtained. The ultrashort pulses generated by the DWs can be tunable over the whole visible wavelength by adjusting the wavelengths of the pump pulses coupled into different knots. It can be believed that this widely wavelength-tunable ultrashort visible pulse source has important applications in ultrafast photonics and resonant Raman scattering.
Chinese Physics B | 2012
Shen Xiangwei; Yuan Jin-Hui; Sang Xinzhu; Yu Chong-Xiu; Rao Lan; Xia Min; Han Ying; Xia Chang-Ming; Hou Lan-Tian
Highly efficient Cherenkov radiation (CR) is generated by the soliton self-frequency shift (SSFS) in the irregular point of a hollow-core photonic crystal fiber (HC-PCF) in our laboratory. The impacts of pump power and wavelength on the CR are investigated, and the corresponding nonlinear processes are discussed. When the average power of the 120 fs pump pulse increases from 500 mW to 700 mW, the Raman soliton shifts from 2210 nm to 2360 nm, the output power of the CR increases by 2.3 times, the maximum output power ratio of the CR at 539 nm to that of the residual pump is calculated to be 24.32:1, the width of the output optical spectrum at the visible wavelength broadens from 35 nm to 62 nm, and the conversion efficiency η of the CR in the experiment can be above 32%.
Chinese Physics B | 2013
Shen Xiangwei; Yuan Jin-Hui; Sang Xinzhu; Yu Chong-Xiu; Rao Lan; Xia Min; Han Ying; Xia Chang-Ming; Hou Lan-Tian; Wu Zhongchao; He Xiao-Liang
Efficient Cherenkov radiation (CR) is experimentally generated by a soliton self-frequency shift (SSFS) in a knot of hollow-core photonic crystal fiber (HC-PCF). When the angle of the half-wave plate is rotated from 0° to 45°, the Raman soliton shifts from 2227 to 2300 nm, the output power of the CR increases 8.15 times, and the maximum output power ratio of the CR at 556 nm to the residual pump is estimated to be 20:1. The width of the output optical spectrum at visible wavelengths broadens from 25 to 45 nm, and the conversion efficiency of the CR can be above 28%. Moreover, the influences of the pump polarization and wavelength on the CR are studied, and the corresponding nonlinear processes are discussed.
Chinese Physics B | 2012
Shen Xiangwei; Yuan Jin-Hui; Sang Xinzhu; Yu Chong-Xiu; Rao Lan; Xin Xiangjun; Xia Min; Han Ying; Xia Chang-Ming; Hou Lan-Tian
Using a photonic crystal fiber with a zero dispersion wavelength of the fundamental mode at 780 nm designed and fabricated in our lab, the ultraviolet and mid-infrared continua are generated by cross-phase modulation between red-shift solitons and blue-shift dispersive waves. The dependences of continuum on the pump power and wavelength are investigated. With the pump working at 820 nm, when the pump power increases from 300 to 500 mW, the bandwidths of ultraviolet and mid-infrared continua change from 80 to 140 nm and 100 to 200 nm, respectively. The wavelength of ultraviolet continuum is below 246 nm, and the wavelength of mid-infrared continuum exceeds 2500 nm. Moreover, the influences of pump power on wavelength and conversion efficiency of different parts of continua are also demonstrated.
Archive | 2013
Wu Zhongchao; Shen Xiangwei; Chen Huazhi; Linghu Meiao
Archive | 2015
Shen Xiangwei; Wu Zhongchao; Wang Xiaoxin; Liu Gang
Archive | 2015
Shen Xiangwei; Wu Zhongchao; Wang Xiaoxin; Liu Gang
Archive | 2017
Chen Huazhi; Shen Xiangwei; Wang Zhilin; Zhu Ji; Zhou Jianguo; Cao Jiaqiang
Archive | 2017
Chen Huazhi; Shen Xiangwei; Wang Zhilin; Zhu Ji; Zhou Jianguo; Cao Jiaqiang
Archive | 2016
Shen Xiangwei; Wu Zhongchao; Wang Xiaoxin; Wang Dagui