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PREPARATION AND CHARACTERIZATION OF LONG-LIVED MOLECULAR RYDBERG STATES - APPLICATION TO HD

机译:寿命长的莱德堡态的制备与表征-HD应用

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The decay dynamics by predissociation and rotational autoionization of high Rydberg states of HD close to the first few rotational levels of the ground vibronic state of th HD+ cation have been studied by delayed pulsed field ionization following resonant (1+1') two-photon absorption via the B state. Although predissociation and autoionization both contribute to the rapid decay of Rydberg states with principal quantum number n much less than 100, the highest Rydberg states (n>100) are stable for more than 20 mu s. In contrast to H-2, channels associated with an HD+ (upsilon=0,N+=even) ion core are coupled to channels associated with HD+ (upsilon(+)=0,N+=odd) ion core. We demonstrate that complex resonances that arise from rotational channel interactions between low (n similar to 25) Rydberg states characterized by a core with rotational angular momentum quantum number N++2 and the pseudocontinuum of very high Rydberg states characterized by an N+ core can be used with high efficiency to produce long-lived high Rydberg states. An investigation of the pulsed field ionization characteristics of these complex resonances enables us to measure the branching between diabatic and adiabatic field ionization and to determine the optimal conditions required to extend the method of H-photofragment Rydberg translational spectroscopy pioneered by Schnieder et al.[J. Chem. Phys. 92, 7027 (1990)] to molecular species. (C) American Institute of Physics. [References: 48]
机译:通过共振(1 + 1')双光子吸收后的延迟脉冲场电离,研究了HD高里德堡态的HD的离解和旋转自电离的衰减动力学,该动力学接近于HD +阳离子的基振子态的前几个旋转能级。通过B状态。尽管预离解和自电离化都有助于本能数远小于100的里德堡态的快速衰变,但最高的里德堡态(n> 100)稳定超过20 s s。与H-2相反,与HD +(upsilon = 0,N + =偶数)离子核相关联的通道耦合到与HD +(upsilon(+)= 0,N + = odd)离子核相关的通道。我们证明了由以旋转角动量量子数为N ++ 2的核为特征的低(n类似于25)Rydberg态与以N +核为特征的非常高的Rydberg态的伪连续谱之间的旋转通道相互作用引起的复杂共振可以是高效率地用于产生长寿命的高里德堡州。对这些复杂共振的脉冲场电离特性的研究,使我们能够测量非绝热场和绝热场电离之间的分支,并确定扩展Schnieder等人率先提出的H片段Rydberg平移光谱法的最佳条件。 。化学物理92,7027(1990)]。 (C)美国物理研究所。 [参考:48]

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