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在石英光子晶体光纤中,通过中红外波长的简并四波混频实现高效宽带斯托克斯波产生。

Efficient and broadband Stokes wave generation by degenerate four-wave mixing at the mid-infrared wavelength in a silica photonic crystal fiber.

出版信息

Opt Lett. 2013 Dec 15;38(24):5288-91. doi: 10.1364/OL.38.005288.

Abstract

Based on degenerate four-wave mixing (FWM), the broadband Stokes waves are efficiently generated at the mid-infrared wavelength above 2 μm, for the first time to our knowledge, by coupling the femtosecond pulses into the fundamental mode of a silica photonic crystal fiber designed and fabricated in our laboratory. Influences of the power and wavelength of pump pulses on the phase-matched frequency conversion process are discussed. When pump pulses with central wavelength of 815 nm and average power of 300 mW are used, the output power ratio of the Stokes wave generated at 2226 nm and the residual pump wave P(s)/P(res) is estimated to be 10.8:1, and the corresponding conversion efficiency η(s) and bandwidth B(s) of the Stokes wave can be up to 26% and 33 nm, respectively. The efficient and broadband Stokes waves can be used as the ultrashort pulse sources for mid-infrared photonics and spectroscopy.

摘要

基于简并四波混频(FWM),我们首次在实验室设计和制造的二氧化硅光子晶体光纤的基模中耦合飞秒脉冲,在中红外波长以上 2 μm 处高效产生宽带斯托克斯波。讨论了泵浦脉冲的功率和波长对相匹配频率转换过程的影响。当使用中心波长为 815nm、平均功率为 300mW 的泵浦脉冲时,在 2226nm 处产生的斯托克斯波的输出功率比 P(s)/P(res) 估计为 10.8:1,斯托克斯波的相应转换效率 η(s) 和带宽 B(s) 分别高达 26%和 33nm。高效宽带斯托克斯波可用作中红外光子学和光谱学的超短脉冲源。

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