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The photodissociation dynamics of ozone at 193 nm: an O(1D2) angular momentum polarization study.

机译:臭氧在193 nm处的光解离动力学:O(1D2)角动量极化研究。

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摘要

Polarized laser photolysis, coupled with resonantly enhanced multiphoton ionization detection of O(1D2) and velocity-map ion imaging, has been used to investigate the photodissociation dynamics of ozone at 193 nm. The use of multiple pump and probe laser polarization geometries and probe transitions has enabled a comprehensive characterization of the angular momentum polarization of the O(1D2) photofragments, in addition to providing high-resolution information about their speed and angular distributions. Images obtained at the probe laser wavelength of around 205 nm indicate dissociation primarily via the Hartley band, involving absorption to, and diabatic dissociation on, the B 1B2(3 1A1) potential energy surface. Rather different O(1D2) speed and electronic angular momentum spatial distributions are observed at 193 nm, suggesting that the dominant excitation at these photon energies is to a state of different symmetry from that giving rise to the Hartley band and also indicating the participation of at least one other state in the dissociation process. Evidence for a contribution from absorption into the tail of the Hartley band at 193 nm is also presented. A particularly surprising result is the observation of nonzero, albeit small values for all three rank K = 1 orientation moments of the angular momentum distribution. The polarization results obtained at 193 and 205 nm, together with those observed previously at longer wavelengths, are interpreted using an analysis of the long range quadrupole-quadrupole interaction between the O(1D2) and O2(1Deltag) species.
机译:偏振激光光解,加上共振增强的O(1D2)多光子电离检测和速度图离子成像,已被用于研究193 nm处臭氧的光解离动力学。使用多个泵浦和探针激光偏振几何形状和探针跃迁,不仅可以提供O(1D2)光碎片的角动量极化的全面表征,而且还可以提供有关其速度和角度分布的高分辨率信息。在大约205 nm的探测激光波长处获得的图像表明主要通过Hartley能带解离,涉及到B 1B2(3 1A1)势能表面的吸收以及非绝热解离。在193 nm处观察到相反的O(1D2)速度和电子角动量空间分布,这表明这些光子能量的主要激发处于与引起Hartley能带的对称性不同的对称状态,并且还表明解离过程中的至少一个其他状态。还提供了在193 nm处吸收到Hartley谱带尾部的贡献的证据。一个特别令人惊讶的结果是观察到非零值,尽管对于角动量分布的所有三个等级K = 1取向矩都是很小的值。通过分析O(1D2)和O2(1Deltag)物种之间的长距离四极-四极相互作用,可以解释在193和205 nm处获得的极化结果,以及先前在较长波长下观察到的极化结果。

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