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Excited state wavepacket dynamics in NO2 probed by strong-field ionization

机译:强野电离探测的NO2中的激发态波皮动力学

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We present an experimental femtosecond time-resolved study of the 399 nm excited state dynamics of nitrogen dioxide using channel-resolved above threshold ionization (CRATI) as the probe process. This method relies on photoelectron-photoion coincidence and covariance to correlate the strongfield photoelectron spectrum with ionic fragments, which label the channel. In all ionization channels observed, we report apparent oscillations in the ion and photoelectron yields as a function of pumpprobe delay. Further, we observe the presence of a persistent, time-invariant above threshold ionization comb in the photoelectron spectra associated with most ionization channels at long time delays. These observations are interpreted in terms of single-pump-photon excitation to the first excited electronic X(2)A(1) state and multi-pump-photon excitations to higher-lying states. The short time delay (< 100 fs) dynamics in the fragment channels show multi-photon pump signatures of higherlying neutral state dynamics, in data sets recorded with higher pump intensities. As expected for pumping NO2 at 399 nm, non-adiabatic coupling was seen to rapidly re-populate the ground state following excitation to the first excited electronic state, within 200 fs. Subsequent intramolecular vibrational energy redistribution results in the spreading of the ground state vibrational wavepacket into the asymmetric stretch coordinate, allowing the wavepacket to explore nuclear geometries in the asymptotic region of the ground state potential energy surface. Signatures of the vibrationally " hot" ground state wavepacket were observed in the CRATI spectra at longer time delays. This study highlights the complex and sometimes competing phenomena that can arise in strong-field ionization probing of excited state molecular dynamics.
机译:我们介绍了一种使用通道分辨的上述阈值电离(CRATI)作为探针过程的氮二氧化氮的399nm激发状态动态的实验飞秒时间分辨研究。该方法依赖于光电子 - 光相结合和协方差与离子碎片相关联的强子场光电子光谱,其标记通道。在观察到的所有电离通道中,我们以泵浦延迟的函数报告离子和光电子的明显振荡。此外,我们观察在与大多数电离通道相关联的光电子谱中,观察到持续,时间不变的上述阈值电离梳状,长时间延迟。这些观察结果以单泵 - 光子激发到第一激发电子X(2)A(1)状态和多泵浦光子激发到更高位于较高的状态而言。片段通道中的短时间延迟(<100 fs)动态显示了更高泵强度记录的数据集中的中性状态动态的多光子泵签名。对于在399nm处的NO 2泵送NO2的预期,观察到在200 fs内激发到第一个激发电子状态的激发之后,可以快速重新填充地位的非绝热偶联。随后的分子内振动能量再分布导致接地状态振动波袋进入不对称拉伸坐标,允许波袋探索地面势能表面的渐近区域中的核几何形状。在较长的时间延迟下在CRATI光谱中观察到振动“热”接地态波皮皮克的签名。本研究突出了激发态分子动力学的强场电离探测中可能出现的复杂且有时竞争现象。

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