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Quantitative nonlinear spectroscopy: a direct comparison of degenerate four-wave mixing with cavity ring-down spectroscopy applied to NaH

机译:定量非线性光谱:简并四波混频与腔环衰荡光谱应用于NaH的比较

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Cavity ring-down spectroscopy and degenerate four-wave mixing have been applied for spectroscopic studies, temperature determination, and measurement of relative dipole transition moments of photochemically produced sodium hydride. In our experiment, NaH was formed within a heat-pipe oven after 3p excitation of sodium in a hydrogen atmosphere with a second dye laser. The reaction product NaH was probed in the near ultraviolet part of the spectrum at 382 nm with 1-4-/spl mu/s delay to the excitation pulse using both a linear and nonlinear spectroscopic technique with a pulsed dye laser source (pulsewidth 15-ns full-width half-maximum). The strengths and limitations of these two spectroscopic techniques are discussed. Since the two processes depend on different parameters and the image-forming beams have different properties, it is difficult to define a single criterion for comparison. But our measurements indicate that cavity ring-down spectroscopy is a powerful tool with a sensitivity better than 10/sup 9/ particles per cm/sup 3/ and quantum state which is comparable to degenerate four-wave mixing in our case.
机译:腔衰荡光谱法和简并四波混频技术已用于光谱研究,温度测定和光化学生产的氢化钠的相对偶极跃迁矩的测量。在我们的实验中,NaH是在氢气管中用第二种染料激光对钠进行3p激发后在热管炉中形成的。使用线性和非线性光谱技术,使用脉冲染料激光源(脉冲宽度15-nm),在382 nm光谱的近紫外光部分以激发光脉冲的1-4- / spl mu / s延迟探测反应产物NaH。 ns全角半最大值)。讨论了这两种光谱技术的优势和局限性。由于这两个过程取决于不同的参数,并且成像光束具有不同的属性,因此很难定义一个比较标准。但是我们的测量结果表明,腔衰荡光谱法是一种功能强大的工具,其灵敏度优于10 / sup 9 /颗粒/ cm / sup 3 /和量子态,在我们的案例中可以媲美简并四波混频。

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