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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Theoretical investigation of the forward phase-matched geometry for degenerate four-wave mixing spectroscopy
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Theoretical investigation of the forward phase-matched geometry for degenerate four-wave mixing spectroscopy

机译:简并四波混频光谱正向匹配几何的理论研究

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We examine theoretically the degenerate four-wave mixing (DFWM) signal intensities and line shapes obtained with the forward phase-matched geometry in which all beams propagate in the same direction and compare the results to those of the phase-conjugate geometry with counterpropagating pump beams. To examine the forward phase-matched geometry, we modify a theoretical approach used previously to calculate phase-conjugate DFWM signal intensities. This theoretical approach, which involves numerical integration of the time-dependent density-matrix equations, is validated for the forward phase-matched geometry by comparison of our calculated line shapes to both a perturbative solution and to experimental data. This methodology is then used to compare the signal intensities and line shapes obtained with the forward phase-matched geometry and the phase-conjugate geometry in the perturbative (low laser power) and saturated (high laser power) regimes. In the perturbative regime the forward phase-matched signal exhibits less sensitivity to the Doppler linewidth. At pump laser intensities approximately equal to the saturation intensity the signal for the forward phase-matched geometry is stronger than that for the phase-conjugate geometry for primarily Doppler-broadened resonances, assuming the same probe volume for both geometries. These advantages warrant fur ther investigations employing the forward phase-matched configuration for DFWM measurements of gasphase species. (C) 1998 Optical Society of America [S0740-3224(98)01819-4]. [References: 32]
机译:我们从理论上检查通过正向相位匹配几何结构获得的简并四波混频(DFWM)信号强度和线形,其中所有光束都沿相同方向传播,并将结果与​​具有反向传播泵浦光束的相位共轭几何结构的结果进行比较。为了检查正向相位匹配的几何形状,我们修改了以前用于计算相位共轭DFWM信号强度的理论方法。这种理论方法涉及时间相关的密度矩阵方程的数值积分,通过将我们计算的线形与扰动解和实验数据进行比较,可以验证正向相位匹配的几何形状。然后,该方法用于比较在微扰(低激光功率)和饱和(高激光功率)状态下通过正向相位匹配的几何形状和相位共轭几何形状获得的信号强度和线形。在微扰状态下,前向相位匹配信号对多普勒线宽的灵敏度较低。在泵浦激光强度近似等于饱和强度的情况下,假设两种几何结构的探头体积相同,则正向相位匹配几何结构的信号要强于主要用于多普勒扩展共振的相位共轭几何结构的信号。这些优点使进一步研究采用正相匹配配置进行气相物质的DFWM测量成为可能。 (C)1998年美国眼镜学会[S0740-3224(98)01819-4]。 [参考:32]

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