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首页> 外文期刊>The Journal of Chemical Physics >Cross sections for rotational decoherence of perturbed nitrogen measured via decay of laser-induced alignment
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Cross sections for rotational decoherence of perturbed nitrogen measured via decay of laser-induced alignment

机译:通过激光诱导对准的衰减测量的氮的旋转去相干截面

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We quantitatively determine cross sections for rotational decoherence from the decay of nonadiabatic laser-induced alignment in nitrogen and nitrogen-foreign gas mixtures in a temperature range between 80 K and room temperature. The cross section for rotational decoherence in pure nitrogen decreases from 102 ?~2 at 80 K to 48 ?~2 at 295 K, leading to long-lived coherences even at high temperatures. Comparison with the broadening of the transition lines of the Raman Q-branch reported in the literature shows that the decay of rotational coherence proceeds at the same rate as rotational depopulation. This is verified also for mixtures of nitrogen with hydrogen, helium, argon, and krypton. We discuss limits posed by a possible J-dependence of the cross sections and strategies for state resolved determination from the time-dependent alignment signal.
机译:我们从在80 K和室温之间的温度范围内的氮气和氮气-氮气混合物中的非绝热激光诱导的排列的衰减中,定量确定旋转消相干的横截面。纯氮中旋转去相干的横截面从80 K的102?〜2减小到295 K的48?〜2,即使在高温下也能保持长寿命的相干。与文献中报道的拉曼Q分支过渡线变宽的比较表明,旋转相干的衰减以与旋转人口减少相同的速率进行。氮与氢,氦,氩和k的混合物也得到了验证。我们讨论了由横截面的可能J相关性所构成的限制以及根据时间相关的对准信号进行状态解析确定的策略。

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