Dual-wavelength-pumped Raman-resonant four-wave mixing

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Fumihiko Kannari
1994 ◽  
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N. A. Cholan ◽  
M. H. Al-Mansoori ◽  
A. S. M. Noor ◽  
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Kuaisheng Zou ◽  
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2010 ◽  
Vol 19 (01) ◽  
pp. 123-130 ◽  
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S. W. HARUN ◽  
S. F. NORIZAN ◽  
M. R. A. MOGHADDAM ◽  
H. AHMAD

A multi-wavelength Brillouin fiber laser (BFL) is demonstrated by using dual-wavelength fiber in a 7.7 km dispersion compensating fiber (DCF) that is incorporated in a 49 cm Bismuth erbium-doped fiber laser. The BFL operates in C-band, which is shifted by 0.08 nm and amplified by a Raman pump (RP). The threshold power for BP pumps and the Raman pump is achieved at 7 dBm and around 35 mW, respectively. The exclusive and practical benefits of using reduced high nonlinear Bismuth-erbium doped fiber ( Bi-EDF ) in implementing a four-wave mixing (FWM) method for multi-wavelengths Brillouin fiber laser (BFL) applications are experimentally demonstrated. Coupled interactions of Brillouin, Raman, and FWM scattering explain the unique feature of proposed configuration.


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