Highly efficient wavelength-tunable anti-Stokes signal conversion by phase-matched four-wave mixing in the second-order mode of photonic crystal fiber

被引:0
|
作者
J.-H. Yuan
X.-Z. Sang
C.-X. Yu
X.-J. Xin
G.-Y. Zhou
S.-G. Li
L.-T. Hou
机构
[1] State Key Laboratory of Information Photonics and Optical Communications (Beijing University of Posts and Telecommunications),Institute of Infrared Optical Fibers and Sensors, Physics Department
[2] Yanshan University,undefined
来源
Applied Physics B | 2011年 / 104卷
关键词
Pump Power; Photonic Crystal Fiber; Dispersion Wavelength; Zero Dispersion Wavelength; Effective Mode Area;
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学科分类号
摘要
Using the photonic crystal fiber (PCF) with zero dispersion wavelengths of the fundamental mode and the second-order mode at 985 nm and 885 nm designed and fabricated in our lab, the anti-Stokes signals from 586.5 to 558 nm are efficiently generated in the second-order mode. When the pump working wavelength λ0 increases from 830 to 880 nm and the input average power Pin reduces from 43 to 25 mW, the output power of anti-Stokes signal increases 1.76 times, the power ratio of anti-Stokes signal at 558 nm to the residual pump component at 880 nm is estimated as 5:1, and the maximal conversion efficiency Pas/Pp0 can be up to 36%. The possible reasons for the difference from theoretical results are discussed. The combined effects of the interval between the pump working wavelength and zero dispersion wavelength and the input power on the signal conversion process are analyzed.
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页码:117 / 123
页数:6
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