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Molecular lens applied to benzene and carbon disulfide molecular beams

机译:分子透镜应用于苯和二硫化碳分子束

摘要

A molecular lens of the nonresonant dipole force formed by focusing a nanosecond IR laser pulse has been applied to benzene and CS2 molecular beams. Using the velocity map imaging technique for molecular ray tracing, characteristic molecular lens parameters including the focal length (f ), minimum beam width (W), and distance to the minimum beam width position (D) were determined. The laser intensity dependence of the observed lens parameters was in good agreement with theoretical predictions. W was independent of the laser peak intensity (I-0), whereas f and D varied linearly with 1/I-0. The differences in lens parameters between the molecular species were well correlated with the polarizability per mass values of the molecules. A high chromatographic resolution of Rs = 0.84 was achieved between the images of benzene molecular beams undeflected and deflected by the lens. The possibilities for a new type of chromatography are discussed.
机译:通过聚焦纳秒级红外激光脉冲形成的非共振偶极力的分子透镜已应用于苯和CS2分子束。使用用于分子射线追踪的速度图成像技术,确定了分子透镜的特征参数,包括焦距(f),最小光束宽度(W)和到最小光束宽度位置的距离(D)。观察到的镜片参数对激光强度的依赖性与理论预测吻合良好。 W与激光峰值强度(I-0)无关,而f和D随1 / I-0线性变化。分子种类之间的镜片参数差异与分子的每质量值的极化率密切相关。在透镜未偏转和偏转的苯分子束图像之间实现了Rs = 0.84的高色谱分辨率。讨论了新型色谱的可能性。

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