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Axis-dependence of molecular high harmonic emission in three dimensions

机译:分子高次谐波发射在三个维度上的轴相关性

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High-order harmonic generation in an atomic or molecular gas is a promising source of sub-femtosecond vacuum ultraviolet coherent radiation for transient scattering, absorption, metrology and imaging applications. High harmonic spectra are sensitive to ?ngstrom-scale structure and motion of laser-driven molecules, but interference from radiation produced by random molecular orientations obscures this in all but the simplest cases, such as linear molecules. Here we show how to extract full body-frame high harmonic generation information for molecules with more complicated geometries by utilizing the methods of coherent transient rotational spectroscopy. To demonstrate this approach, we obtain the relative strength of harmonic emission along the three principal axes in the asymmetric-top sulphur dioxide . This greatly simplifies the analysis task of high harmonic spectroscopy and extends its usefulness to more complex molecules.
机译:原子或分子气体中高阶谐波的产生是飞秒真空紫外相干辐射的有前途的来源,可用于瞬态散射,吸收,计量和成像应用。高谐波光谱对激光驱动的分子的埃级结构和运动很敏感,但是除了最简单的情况(例如线性分子)以外,由随机分子取向产生的辐射所产生的干扰都会使这种情况模糊。在这里,我们展示了如何利用相干瞬态旋转光谱法提取具有更复杂几何形状的分子的全身骨架高次谐波生成信息。为了证明这种方法,我们获得了不对称顶部二氧化硫沿三个主轴的谐波发射的相对强度。这大大简化了高次谐波光谱的分析任务,并将其用途扩展到更复杂的分子。

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