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Relaxation Dynamics in Photoexcited Chiral MoleculesStudied by Time-Resolved Photoelectron Circular Dichroism: TowardChiral Femtochemistry

机译:光激发手性分子的弛豫动力学由时间分辨光电子圆二色性研究:走向手性组化

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摘要

Unravelling the main initial dynamics responsible for chiral recognition is a key step in the understanding of many biological processes. However, this challenging task requires a sensitive enantiospecific probe to investigate molecular dynamics on their natural femtosecond time scale. Here we show that, in the gas phase, the ultrafast relaxation dynamics of photoexcited chiral molecules can be tracked by recording time-resolved photoelectron circular dichroism (TR-PECD) resulting from the photoionization by a circularly polarized probe pulse. A large forward–backward asymmetry along the probe propagation axis is observed in the photoelectron angular distribution. Its evolution with pump–probe delay reveals ultrafast dynamics that are inaccessible in the angle-integrated photoelectron spectrum or via the usual electron emission anisotropy parameter (β). PECD, which originates from the electron scattering in the chiral molecular potential, appears as a new sensitive observable for ultrafast molecular dynamics in chiral systems.
机译:弄清负责手性识别的主要初始动力学是理解许多生物学过程的关键步骤。但是,这项艰巨的任务需要灵敏的对映体特异性探针来研究其自然飞秒时间尺度上的分子动力学。在这里,我们表明,在气相中,通过记录由圆极化探针脉冲进行光电离而产生的时间分辨光电子圆二色性(TR-PECD),可以跟踪光激发手性分子的超快弛豫动力学。在光电子角分布中观察到沿着探针传播轴的大的前后不对称性。它随着泵浦-探针延迟的演化揭示了超快动力学,在角积分光电子谱或通过通常的电子发射各向异性参数(β)无法获得。 PECD源自手性分子势能中的电子散射,它似乎是手性系统中超快分子动力学的新敏感现象。

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