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通过光电子圆二色性研究超快弛豫:樟脑和葑酮的异构体比较。

Ultrafast relaxation investigated by photoelectron circular dichroism: an isomeric comparison of camphor and fenchone.

作者信息

Blanchet Valérie, Descamps Dominique, Petit Stéphane, Mairesse Yann, Pons Bernard, Fabre Baptiste

机构信息

Université de Bordeaux-CNRS-CEA, CELIA, UMR5107, F33405 Talence, France.

出版信息

Phys Chem Chem Phys. 2021 Nov 24;23(45):25612-25628. doi: 10.1039/d1cp03569j.

Abstract

We study the isomeric effects using time resolved photoelectron circular dichroism (TR-PECD). Using a (1 + 1') pump-probe ionisation scheme with photoelectrons collected by the velocity map imaging technique, we compare the relaxation dynamics from the 3s-Rydberg state in 1,4-(+)-camphor with the one in its chiral isomer, 1,4-(-)-fenchone [Comby , 2016, , , 4514]. Our measurements revealed a similar lifetime for both isomers. However, the circular dichroism in the photoelectron angular distribution decays exponentially in ∼730 fs from a +9% forward amplitude during the first hundreds of femtoseconds to reach an asymptotic -2% backward amplitude. This time-scale is drastically shorter than in fenchone. Our analysis allows us to evaluate the impact of the anisotropy of excitation; the relaxation dynamics, following photoexcitation by the linearly polarized pump, is then compared to that induced by a circularly polarized pump pulse (CPL). With such a CPL pump, we then retrieve time constants of our chiral observables similar to the ones recorded in fenchone. Quantum and classical simulations are developed and used to decipher the dependence of the PECD on the anisotropy of excitation and the spatial distribution of the 3s-Rydberg electron wavefunction. Our experimental investigations, supported by our simulations, suggest that varying the pump ellipticity enables us to reveal the breakdown of the Franck-Condon approximation.

摘要

我们使用时间分辨光电子圆二色性(TR-PECD)研究异构效应。采用(1 + 1')泵浦-探测电离方案,通过速度成像技术收集光电子,我们比较了1,4-(+)-樟脑和其手性异构体1,4-(-)-葑酮中3s-里德堡态的弛豫动力学[Comby, 2016, , , 4514]。我们的测量结果表明两种异构体具有相似的寿命。然而,光电子角分布中的圆二色性在约730飞秒内呈指数衰减,从最初几百飞秒内的 +9% 向前振幅衰减到渐近的 -2% 向后振幅。这个时间尺度比葑酮中的要短得多。我们的分析使我们能够评估激发各向异性的影响;然后将线偏振泵浦光激发后的弛豫动力学与圆偏振泵浦脉冲(CPL)诱导的弛豫动力学进行比较。使用这样的CPL泵浦,我们随后获得了与在葑酮中记录的类似的手性可观测量的时间常数。开展了量子和经典模拟,并用于解读PECD对激发各向异性和3s-里德堡电子波函数空间分布的依赖性。我们的实验研究在模拟的支持下表明,改变泵浦椭圆率能够使我们揭示弗兰克-康登近似的失效情况。

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