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Infrared Comb Spectroscopy of Buffer-Gas-Cooled Molecules: Toward Absolute Frequency Metrology of Cold Acetylene

机译:缓冲气体冷却分子的红外梳状谱:朝向冷乙炔的绝对频率计量

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摘要

We review the recent developments in precision ro-vibrational spectroscopy of buffer-gas-cooled neutral molecules, obtained using infrared frequency combs either as direct probe sources or as ultra-accurate optical rulers. In particular, we show how coherent broadband spectroscopy of complex molecules especially benefits from drastic simplification of the spectra brought about by cooling of internal temperatures. Moreover, cooling the translational motion allows longer light-molecule interaction times and hence reduced transit-time broadening effects, crucial for high-precision spectroscopy on simple molecules. In this respect, we report on the progress of absolute frequency metrology experiments with buffer-gas-cooled molecules, focusing on the advanced technologies that led to record measurements with acetylene. Finally, we briefly discuss the prospects for further improving the ultimate accuracy of the spectroscopic frequency measurement.
机译:我们审查了使用红外频率梳理的抗缓冲气体冷却中性分子的精密RO振动光谱的最新进程,其是直接探针来源或以超准确的光学尺。特别是,我们展示了复杂分子的相干宽带光谱学特别是通过冷却内部温度的光谱急剧简化的益处。此外,冷却平移运动允许更长的光分子相互作用时间,从而降低过度的传输时间展现效果,对简单分子上的高精度光谱至关重要。在这方面,我们报告了缓冲气体冷却分子的绝对频率计量实验的进展,专注于导致乙炔记录测量的先进技术。最后,我们简要讨论了进一步提高光谱频率测量的最终准确性的前景。

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