Novel Raman Fiber Lasers Emitting in the U-Band With Combined Volume Bragg Gratings

Narrow linewidth and widely tunable high-power Raman fiber lasers emitting in the U-band wavelength were demonstrated based on combinations of volume Bragg gratings with different center wavelengths. The narrowed linewidth was 65 pm at a center wavelength of 1657.86 nm with a maximum output power of...

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Main Authors: Weichao Yao, Jun Liu, Nanyi Chen, Jianing Zhang, Yongguang Zhao, Deyuan Shen
Format: Article
Language:English
Published: IEEE 2014-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/6967742/
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spelling doaj-6477ad4ebd874f5dade6c6e98497dbc52021-03-29T17:20:15ZengIEEEIEEE Photonics Journal1943-06552014-01-01661810.1109/JPHOT.2014.23746096967742Novel Raman Fiber Lasers Emitting in the U-Band With Combined Volume Bragg GratingsWeichao Yao0Jun Liu1Nanyi Chen2Jianing Zhang3Yongguang Zhao4Deyuan Shen5Key Lab. of Adv. Laser Mater. & Devices, Jiangsu Normal Univ., Xuzhou, ChinaKey Lab. of Adv. Laser Mater. & Devices, Jiangsu Normal Univ., Xuzhou, ChinaDept. of Opt. Sci. & Eng., Fudan Univ., Shanghai, ChinaDept. of Opt. Sci. & Eng., Fudan Univ., Shanghai, ChinaKey Lab. of Adv. Laser Mater. & Devices, Jiangsu Normal Univ., Xuzhou, ChinaKey Lab. of Adv. Laser Mater. & Devices, Jiangsu Normal Univ., Xuzhou, ChinaNarrow linewidth and widely tunable high-power Raman fiber lasers emitting in the U-band wavelength were demonstrated based on combinations of volume Bragg gratings with different center wavelengths. The narrowed linewidth was 65 pm at a center wavelength of 1657.86 nm with a maximum output power of 8.3 W, corresponding to a slope efficiency of 55.6%. For the tunable Raman fiber laser, continuously tunable dual-wavelength emission was obtained in a wide band (1621.3-1683.5 nm) with a wavelength difference over 60 nm (0.7-62.2 nm). The maximum output power was 11 W, corresponding to a slope efficiency of 76.6%.https://ieeexplore.ieee.org/document/6967742/Raman fiber laservolume Bragg gratingsnarrow linewidthdual-wavelength
collection DOAJ
language English
format Article
sources DOAJ
author Weichao Yao
Jun Liu
Nanyi Chen
Jianing Zhang
Yongguang Zhao
Deyuan Shen
spellingShingle Weichao Yao
Jun Liu
Nanyi Chen
Jianing Zhang
Yongguang Zhao
Deyuan Shen
Novel Raman Fiber Lasers Emitting in the U-Band With Combined Volume Bragg Gratings
IEEE Photonics Journal
Raman fiber laser
volume Bragg gratings
narrow linewidth
dual-wavelength
author_facet Weichao Yao
Jun Liu
Nanyi Chen
Jianing Zhang
Yongguang Zhao
Deyuan Shen
author_sort Weichao Yao
title Novel Raman Fiber Lasers Emitting in the U-Band With Combined Volume Bragg Gratings
title_short Novel Raman Fiber Lasers Emitting in the U-Band With Combined Volume Bragg Gratings
title_full Novel Raman Fiber Lasers Emitting in the U-Band With Combined Volume Bragg Gratings
title_fullStr Novel Raman Fiber Lasers Emitting in the U-Band With Combined Volume Bragg Gratings
title_full_unstemmed Novel Raman Fiber Lasers Emitting in the U-Band With Combined Volume Bragg Gratings
title_sort novel raman fiber lasers emitting in the u-band with combined volume bragg gratings
publisher IEEE
series IEEE Photonics Journal
issn 1943-0655
publishDate 2014-01-01
description Narrow linewidth and widely tunable high-power Raman fiber lasers emitting in the U-band wavelength were demonstrated based on combinations of volume Bragg gratings with different center wavelengths. The narrowed linewidth was 65 pm at a center wavelength of 1657.86 nm with a maximum output power of 8.3 W, corresponding to a slope efficiency of 55.6%. For the tunable Raman fiber laser, continuously tunable dual-wavelength emission was obtained in a wide band (1621.3-1683.5 nm) with a wavelength difference over 60 nm (0.7-62.2 nm). The maximum output power was 11 W, corresponding to a slope efficiency of 76.6%.
topic Raman fiber laser
volume Bragg gratings
narrow linewidth
dual-wavelength
url https://ieeexplore.ieee.org/document/6967742/
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AT junliu novelramanfiberlasersemittingintheubandwithcombinedvolumebragggratings
AT nanyichen novelramanfiberlasersemittingintheubandwithcombinedvolumebragggratings
AT jianingzhang novelramanfiberlasersemittingintheubandwithcombinedvolumebragggratings
AT yongguangzhao novelramanfiberlasersemittingintheubandwithcombinedvolumebragggratings
AT deyuanshen novelramanfiberlasersemittingintheubandwithcombinedvolumebragggratings
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