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Dive into the research topics where Luo Wenyong is active.

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Featured researches published by Luo Wenyong.


Chinese Physics B | 2014

Fiber optical parametric oscillator based on photonic crystal fiber pumped with all-normal-dispersion mode-locked Yb:fiber laser

Gou Dou-Dou; Yang Sigang; Zhang Lei; Wang Xiao-Jian; Chen Hongwei; Chen Minghua; Xie Shizhong; Chen Wei; Luo Wenyong

We demonstrate a cost effective, linearly tunable fiber optical parametric oscillator based on a home-made photonic crystal fiber pumped with a mode-locked ytterbium-doped fiber laser, providing linely tuning ranges from 1018 nm to 1038 nm for the idler wavelength and from 1097 nm to 1117 nm for the signal wavelength by tuning the pump wavelength and the cavity length. In order to obtain the desired fiber with a zero dispersion wavelength around 1060 nm, eight samples of photonic crystal fibers with gradually changed structural parameters are fabricated for the reason that it is difficult to accurately customize the structural dimensions during fabrication. We verify the usability of the fabricated fiber experimentally via optical parametric generation and conclude a successful procedure of design, fabirication, and verification. A seed source of home-made all-normal-dispersion mode-locked ytterbium-doped fiber laser with 38.57 ps pulsewidth around the 1064 nm wavelength is used to pump the fiber optical parametric oscillator. The wide picosecond pulse pump laser enables a larger walk-off tolerance between the pump light and the oscillating light as well as a longer photonic crystal fiber of 20 m superior to the femtosecond pulse lasers, resulting in a larger parametric amplification and a lower threshold pump power of 15.8 dBm of the fiber optical parametric oscillator.


Archive | 2016

SMALL BENDING RADIUS SINGLE-MODE OPTICAL FIBER WITH COMPATIBILITY

Luo Wenyong; Li Shiyu; Chen Wei; Mo Qi; Ke Yili; Hu Fuming


Archive | 2017

New wavelength double cladding ytterbium-doped fiber and preparation method thereof

Yan Lei; Du Cheng; Chen Chao; Wang Bi; Li Wei; Zhao Lei; Zhang Jie; Luo Wenyong


Archive | 2017

METHOD FOR EFFICIENTLY PREPARING DOPED OPTICAL FIBRE PREFORM AND DOPED OPTICAL FIBRE PREFORM

Du Cheng; Luo Wenyong; Yan Lei; Zhang Tao; Chen Chao; Ke Yili; Kong Ming; Zhang Jie; Liu Zhijian; Liu Lifeng


Archive | 2017

Optical fiber stabilization apparatus, optical fiber rotational drawing system and optical fiber drawing method

Yan Lei; Luo Wenyong; Du Cheng; Chen Jun; Li Wei; Kong Ming; Zhang Jie; Liu Zhijian


Archive | 2017

Optical fiber prefabricated rod for manufacturing optical fiber with multi-layer structure and optical fiber manufacturing method

Luo Wenyong; Ke Yili; Du Cheng; Zhang Tao; Li Wei; Chen Chao; Wang Bi; Lei Qiong; Zhang Jie


Archive | 2017

LOW-LOSS RADIATION-PROOF BIREFRINGENT PHOTONIC CRYSTAL FIBRE

Luo Wenyong; Liu Zhijian; Li Wei; Ke Yili; Zhao Lei; Du Cheng; Hu Fuming; Lei Qiong; Du Kun; Kang Zhiwen; Dan Rong


Archive | 2017

Rapid manufacturing device and method for optical fibers

Luo Wenyong; Wang Tao; Zhang Jie; Qi Wei; Lei Qiong; Zhang Tao; Ke Yili; Chen Chao; Wang Bi


Archive | 2017

Optical fiber perform rod for manufacturing single-mode optical fiber and method for manufacturing single-mode optical fiber

Luo Wenyong; Qi Wei; Ke Yili; Du Cheng; Wang Tao; Li Wei; Zhang Jie; Zhang Tao


Archive | 2016

Testing device and method for absorption coefficient of rare earth doped fiber preform

Yan Lei; Luo Wenyong; Du Cheng; Chen Chao; Zhang Tao; Li Wei; Zhang Jie; Liu Zhijian

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Chen Wei

Huazhong University of Science and Technology

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