L-U-band multiwavelength Brillouin-Raman fiber laser assisted by a broadband pump source

被引:0
作者
A. W. Al-Alimi
N. A. Cholan
N. H. Zainol Abidin
M. T. Alresheedi
A. F. Abas
E. K. Ng
M. A. Mahdi
机构
[1] Universiti Tun Hussein Onn Malaysia,Department of Electronic Engineering, Faculty of Electrical and Electronic Engineering
[2] Universiti Putra Malaysia,Wireless and Photonics Networks Research Centre, Faculty of Engineering
[3] King Saud University,Department of Electrical Engineering, College of Engineering
[4] Kingdom of Saudi Arabia,Department of Engineering
[5] University of Cambridge,undefined
来源
Optical and Quantum Electronics | 2023年 / 55卷
关键词
Fiber laser; Stimulated Brillouin scattering; Stimulated Raman scattering;
D O I
暂无
中图分类号
学科分类号
摘要
We demonstrate the generation of multiple lasing wavelength in the L- and U-band from a Brillouin-Raman fiber laser. It was designed in a full-open cavity with a dispersion compensating fiber section as the nonlinear and Raman gain medium. A broadband source originated from the amplified spontaneous emission of an erbium-ytterbium-doped fiber amplifier was employed as the primary Raman pump. The proposed fiber laser system required a threshold power of 400 mW to initiate its first Brillouin Stokes line with 0.165 nm wavelength spacing. A total of 397 Stokes lines within 3-dB flatness of peak power extended from 1609.7 to 1675.0 nm corresponding to 65.3 nm wavelength range were obtained at the pump power of 850 mW. The utilization of broadband Raman pump source has enhanced the spectral bandwidth of multiwavelength generation. This approach is simple and can be employed to other wavelength ranges subject to the availability of the broadband pump source.
引用
收藏
相关论文
共 95 条
[1]  
Al-Alimi AW(2022)Ultralong wavelength operation of a tunable multiwavelength Brillouin-Raman fiber laser in 1.65 µm band Results Phys. 37 105469-93
[2]  
Cholan NA(2004)Raman amplification for fiber communications systems J. Light Technol. 22 79-36707
[3]  
Shee YG(2019)Ultra-short wavelength operation of thulium-doped fiber amplifiers and lasers Opt. Express 27 36699-532
[4]  
Alresheedi MT(2020)Experimental optimization of the scheme of second-order Raman amplifiers based on ultra-long span systems Results Phys. 18 103195-3358
[5]  
Goh CS(2022)Widely tunable continuous-wave fiber laser in the 1.55–1.8 µm wavelength region Opt. Express 30 42300-66
[6]  
Mahdi MA(2017)Wideband bismuth- and erbium-codoped optical fiber amplifier for C + L + U-telecommunication band Laser Phys. Lett. 14 110001-324
[7]  
Bromage J(1999)Pump interactions in a 100-nm bandwidth Raman amplifier IEEE Photonics Technol. Lett 11 530-3005
[8]  
Chen S(2017)Multi-point temperature sensing using a linear-cavity lasing system Appl. Opt. 56 3206-8
[9]  
Jung Y(2015)Multiwavelength Linear-Cavity SOA-Based laser array design for Multiparameter and Long-Haul sensing IEEE Sens. J. 15 3353-undefined
[10]  
Alam S(2021)Effect of polarization adjustment towards the performance of SOA-based multiwavelength fiber laser Optik (Stuttg) 242 167007-undefined