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首页> 外文期刊>The Journal of Chemical Physics >Effect of nuclear motion on the absorption spectrum of dipicolinic acid
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Effect of nuclear motion on the absorption spectrum of dipicolinic acid

机译:核运动对二吡啶甲酸吸收光谱的影响

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Using semiclassical electron-radiation-ion dynamics, the authors have examined the effect of nuclear motion, resulting from both finite temperature and the response to a radiation field, on the line broadening of the excitation profile of 2,6-pyridinedicarboxylic acid (dipicolinic acid). With nuclei fixed, there is a relatively small broadening associated with the finite time duration of an applied laser pulse. When the nuclei are allowed to move, the excitation spectrum exhibits a much larger broadening, and is also reduced in height and shifted toward lower frequencies. In both cases, the excitation is due to well-defined pi to pi(*) transitions. The further inclusion of thermal motion at room temperature broadens the linewidth considerably because of variations in the molecular geometry: Transitions that had zero or negligible transition probabilities in the ground state geometry are weakly excited at room temperature. (c) 2007 American Institute of Physics.
机译:作者使用半经典的电子辐射离子动力学,研究了有限温度和对辐射场的响应所引起的核运动对2,6-吡啶二甲酸(二吡啶甲酸)激发谱线拓宽的影响。 )。在核固定的情况下,与施加的激光脉冲的有限持续时间相关的展宽相对较小。当允许原子核移动时,激发光谱会表现出更大的展宽,并且高度也会减小,并朝着较低的频率偏移。在这两种情况下,激励都是由于明确定义的pi到pi(*)过渡。由于分子几何结构的变化,在室温下进一步包含热运动会使线宽大大拓宽:基态几何结构中具有零或可忽略的跃迁几率的跃迁在室温下被弱激发。 (c)2007年美国物理研究所。

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