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Possibility of tracking imino–amino tautomerism of cytosine by ultra-short laser pulses using high-order harmonic generation

机译:利用高次谐波产生超短激光脉冲跟踪胞嘧啶亚氨基氨基互变异构的可能性

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Extracting the dynamic structural information of molecules at the time resolution of tens to subtens of femtoseconds is extremely important for understanding many processes of chemistry and biology. In this paper, by theoretical calculations and simulation methods, we show the possibility of tracking the tautomerism of cytosine by ultra-short laser pulses using high-order harmonic generation. First, by analyzing the calculated high-order harmonic spectra emitted while a cytosine molecule in gaseous phase interacts with ultra-short laser pulses, we show that the dependence on molecular alignment is quite different for cases when cytosine is in the imino, the amino, or the transition states. This may serve to distinguish the imino–amino states of cytosine by ultra-short laser pulses. Second, by calculating highorder harmonic spectra emitted by cytosine while being along the chemical reaction path of the tautomerism, we obtain surprising and very interesting results. The high-order harmonic spectra have intensity peaks near the stable states (imino and amino) as well as the transition state. This finding may be a useful tool for tracking the DNA tautomerism, which is one of the reasons for gene mutation.
机译:在数十飞秒至数十飞秒的时间分辨率下提取分子的动态结构信息对于理解化学和生物学的许多过程极为重要。在本文中,通过理论计算和模拟方法,我们显示了利用高次谐波产生超短激光脉冲跟踪胞嘧啶互变异构的可能性。首先,通过分析在气相胞嘧啶分子与超短激光脉冲相互作用时发出的计算出的高次谐波光谱,我们发现,当胞嘧啶位于亚氨基,氨基,或过渡状态。这可能有助于通过超短激光脉冲区分胞嘧啶的亚氨基状态。其次,通过计算胞嘧啶沿互变异构的化学反应路径发出的高阶谐波谱,我们获得了令人惊讶且非常有趣的结果。高次谐波频谱在稳态(亚氨基和氨基)以及过渡态附近具有强度峰。这一发现可能是追踪DNA互变异构现象的有用工具,这是基因突变的原因之一。

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