首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >CORRELATIONS BETWEEN THE INTENSITIES OF PUMP, DEPLETED PUMP AND STOKES WAVES IN SUPERBROADBAND STIMULATED RAMAN SCATTERING
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CORRELATIONS BETWEEN THE INTENSITIES OF PUMP, DEPLETED PUMP AND STOKES WAVES IN SUPERBROADBAND STIMULATED RAMAN SCATTERING

机译:超宽带刺激拉曼散射中泵的强度,消耗的泵和斯托克斯波之间的相关性

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The pair correlations between the intensities of input pump laser radiation with spectral bandwidth of 250 cm(-1), which has femtosecond and picosecond noise structures, output depleted pump radiation and Stokes light generated through stimulated Raman scattering (SRS)in compressed hydrogen have been studied experimentally under weak and strong pump depletion. The third order correlation functions were measured by means of time-delayed four-wave mixing in a Kerr-shutter scheme with two noise light beams under investigation. The data obtained show that the Stokes wave is well correlated with the input pump wave up to an energy conversion efficiency of about 30%. The measured functions display the considerable suppression of the femtosecond amplitude fluctuations in the depleted pump beam upon increasing the efficiency of SRS and pump depletion. Such a result shows a possible way for preparing superbroadband light with smooth temporal envelope and predominant phase fluctuations using SRS. The picosecond part of the correlations between the depleted pump and Stokes waves is characterized by the asymmetrical shape that is probably caused by the fact that picosecond peaks in the noise structure of the depleted pump and Stokes waves have opposite temporal profiles. [References: 15]
机译:光谱带宽为250 cm(-1)的输入泵浦激光辐射强度具有成对相关性,该频谱带宽具有飞秒和皮秒的噪声结构,输出耗尽的泵浦辐射以及通过压缩氢气中的受激拉曼散射(SRS)产生的斯托克斯光。在弱和强泵耗竭下进行了实验研究。三阶相关函数是通过在Kerr-快门方案中对两个噪声光束进行时延四波混频来测量的。获得的数据表明,斯托克斯波与输入泵浦波具有良好的相关性,能量转换效率高达约30%。当提高SRS和泵浦耗尽的效率时,所测量的函数显示出对耗尽的泵浦束中飞秒振幅波动的显着抑制。这样的结果显示了使用SRS制备具有平滑时间包络和主要相位波动的超宽带光的可能方法。耗尽泵和斯托克斯波之间相关性的皮秒部分的特征是不对称形状,这可能是由于耗尽泵和斯托克斯波的噪声结构中的皮秒峰值具有相反的时间分布这一事实造成的。 [参考:15]

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