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Variation of Lasing Wavelength of Fiber Grating Semiconductor Laser with Temperature for Different External Cavity Lengths
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作者 Zhengmao Wu, Hanqing Zhou, Guangqiong Xia, Department of Physics, Southwest Normal University, Chongqing 400715, P. R. China, Tel: 86-23-68254609 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期519-520,共2页
For different external cavity lengths, lasing wavelength variation of fiber grating external cavity semiconductor laser (FGECSL) with ambient temperature has been investigated theoretically, and the theoretical result... For different external cavity lengths, lasing wavelength variation of fiber grating external cavity semiconductor laser (FGECSL) with ambient temperature has been investigated theoretically, and the theoretical results are in agreement with reported experimental observations. 展开更多
关键词 for on as WDM of variation of Lasing wavelength of Fiber Grating Semiconductor Laser with Temperature for Different External Cavity Lengths with
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Numerical analysis of fiber optical parameter amplifier based on triangular photonic crystal fiber
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作者 SHANG maoi LIU ZengJi +1 位作者 YUE Peng CHEN JianPing 《Science in China(Series F)》 2009年第7期1272-1277,共6页
Due to triangular photonic crystal fiber (PCF) high nonlinearity and low dispersion slope, using the condition that the different linear phase shift combination must satisfy the phase match, the expressions of gain ... Due to triangular photonic crystal fiber (PCF) high nonlinearity and low dispersion slope, using the condition that the different linear phase shift combination must satisfy the phase match, the expressions of gain and bandwidth for one-pump fiber-optic parametric amplifiers (1P-FOPA) based on PCF in the normal and abnormal dispersion regimes are derived respectively. Then, 1P-FOPAs performance comparison among PCF, dispersion-shifted fiber (DSF) and highly nonlinear fibers (HNLF) are carried out by numerical simulations. It is shown that the 1P-FOPA based on triangular PCF can provide higher peak gain over wider bandwidth. When the pump wavelength is at the zero-dispersion wavelength (ZDWL), about 108.7 nm single-pass gain bandwidth and 91.4 dB peak gain can be obtained; when in the normal dispersion regime and near zero-dispersion wavelength, not less than 46 nm single-pass gain bandwidth 77.1 nm away from pump can be achieved. Finally the influence of dispersion fluctuation is analyzed, and the result shows that the tolerance of the 1P-FOPA based on photonic crystal fiber is better. 展开更多
关键词 fiber optical parametric amplifier photonic crystal fiber gain bandwidth zero-dispersion wavelength variations
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