首页> 外文期刊>IEEE Journal of Quantum Electronics >Parametric four-photon mixing followed by stimulated Raman scattering with optical pulses in birefringent optical fibers
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Parametric four-photon mixing followed by stimulated Raman scattering with optical pulses in birefringent optical fibers

机译:参数四光子混合,然后在双折射光纤中通过光脉冲进行受激拉曼散射

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摘要

An analysis into the phase matching condition of four-photon mixing in birefringent optical fibers is presented. The analysis yields six independent parametric processes. Some of the associated frequency shifts show a dependence on the fiber birefringence, allowing the authors to obtain constraints under which the parametric Stokes pulse will fall within the Raman gain band to undergo subsequent Raman amplifications. Both polarizations of the pump contribute to the Stokes gain through the stimulated Raman effect. Emphasis is placed on short optical pulses with tradeoffs among frequency shift, pulse walk-off length, and fiber attenuation to yield maximum power conversion to the Stokes frequency. Numerical simulation with a highly birefringent germania-doped silica fiber is used to illustrate the conditions for maximum gain of the Stokes signal.
机译:对双折射光纤中四光子混合的相位匹配条件进行了分析。分析产生六个独立的参数过程。一些相关的频移显示出对光纤双折射的依赖性,这使作者能够获得一些限制,在这些限制下,参量斯托克斯脉冲将落入拉曼增益带以进行后续的拉曼放大。泵的两种极化都通过受激拉曼效应来促进斯托克斯增益。重点放在短光脉冲上,在频移,脉冲走动长度和光纤衰减之间进行权衡,以产生最大功率转换为斯托克斯频率。使用高度双折射掺杂锗的石英纤维进行的数值模拟说明了斯托克斯信号最大增益的条件。

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