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Dissociation dynamics of diatomic molecules in intense laser fields: A scheme for the selection of relevant adiabatic potential curves

机译:双原子分子在强激光场中的解离动力学:相关绝热势曲线的选择方案

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摘要

We investigated the nuclear dynamics of diatomic molecular ions in intense laser fields by analyzing their fragment kinetic-energy release (KER) spectra as a function of the pump-probe delay τ. Within the Born-Oppenheimer (BO) approximation, we calculated ab initio adiabatic potential-energy curves and their electric dipole couplings, using the quantum chemistry code gamess. By comparing simulated KER spectra as a function of either τ or the vibrational quantum-beat frequency for the nuclear dynamics on both individual and dipole-coupled BO potential curves with measured spectra, we developed a scheme for identifying electronic states that are relevant for the dissociation dynamics. We applied this scheme to investigate the nuclear dynamics in O _2 ~+ ions that are produced by ionization of neutral O _2 molecules in an ultrashort infrared (IR) pump pulse and dissociate due to the dipole coupling of molecular potential curves in a delayed IR probe laser field.
机译:我们通过分析双原子分子离子的碎片动能释放(KER)光谱作为泵浦探针延迟τ的函数,研究了强激光场中双原子分子离子的核动力学。在Born-Oppenheimer(BO)近似值内,我们使用量子化学代码游戏计算了从头算起的绝热势能曲线及其电偶极耦合。通过将模拟的KER谱作为τ或振动量子拍频的函数进行比较,以得到单个和偶极耦合的BO势曲线上的核动力学与测得的谱,我们开发了一种方案来识别与解离有关的电子态动力学。我们应用此方案来研究由中性O _2分子在超短红外(IR)泵浦脉冲中电离而产生的O _2〜+离子的核动力学,并且由于分子束在延迟IR探针中的偶极耦合而解离激光场。

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