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High-resolution pulsed-field-ionization zero-kinetic-energy photoelectron spectroscopic study of the two lowest electronic states of the ozone cation O3+

机译:高分辨率脉冲场电离零动能光电子能谱研究臭氧阳离子O3 +的两个最低电子态

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摘要

The pulsed-field-ionization zero-kinetic-energy (PFI-ZEKE) photoelectron spectrum of jet-cooled O-3 has been recorded in the range 101 000-104 000 cm(-1). The origins of the X (1)A(1)-->X+ (2)A(1) and X (1)A(1)-->A(+) B-2(2) transitions could be determined from the rotational structure of the bands, the photoionization selection rules, the photoionization efficiency curve, and comparison with ab initio calculations. The first adiabatic ionization energy of O-3 was measured to be 101 020.5(5) cm(-1) [12.524 95(6) eV] and the energy difference between the X+ (2)A(1) (0,0,0) and A(+) B-2(2) (0,0,0) states was determined to be DeltaT(0)=1089.7(4) cm(-1). Whereas the X-->X+ band consists of an intense and regular progression in the bending (nu(2)) mode observed up to v(2)(+)=4, only the origin of the X-->A(+) band was observed. The analysis of the rotational structure in each band led to the derivation of the r(0) structure of O-3(+) in the X+ [C-2v,r(0)=1.25(2) A,alpha(0)=131.5(9)degrees] and A(+)[C-2v,r(0)=1.37(5) A,alpha(0)=111.3(38)degrees] states. The appearance of the spectrum, which is regular up to 102 300 cm(-1), changes abruptly at approximate to102 500 cm(-1), a position above which the spectral density increases markedly and the rotational structure of the bands collapses. On the basis of ab initio calculations, this behavior is attributed to the onset of large-amplitude motions spreading through several local minima all the way to large internuclear distances. The ab initio calculations are consistent with earlier results in predicting a seam of conical intersections between the X+ and A(+) states approximate to2600 cm(-1) above the cationic ground state and demonstrate the existence of potential minima at large internuclear distances that are connected to the main minima of the X+ and A(+) states through low-lying barriers.
机译:喷射冷却的O-3的脉冲场电离零动能(PFI-ZEKE)光电子能谱已记录在101 000-104 000 cm(-1)的范围内。 X(1)A(1)-> X +(2)A(1)和X(1)A(1)-> A(+)B-2(2)过渡的起源可以从波段的旋转结构,光电离选择规则,光电离效率曲线,以及从头算的比较。 O-3的第一绝热电离能经测量为101 020.5(5)cm(-1)[12.524 95(6)eV],X +(2)A(1)之间的能量差为(0,0, 0)和A(+)B-2(2)(0,0,0)状态确定为DeltaT(0)= 1089.7(4)cm(-1)。 X-> X +波段由弯曲(nu(2))模式下的剧烈且规则的渐变组成,直到v(2)(+)= 4时才观察到,仅X-> A(+ )带被观察到。对每个频带中旋转结构的分析导致推导了X +中的O-3(+)的r(0)结构[C-2v,r(0)= 1.25(2)A,alpha(0) = 131.5(9)degrees]和A(+)[C-2v,r(0)= 1.37(5)A,alpha(0)= 111.3(38)degrees]状态。频谱的外观是常规的,直到102 300 cm(-1),在大约102 500 cm(-1)处突然变化,在该位置上方,频谱密度显着增加,并且波段的旋转结构崩溃。在从头算的基础上,此行为归因于大幅度运动的发生,该运动通过几个局部最小值一直扩展到较大的核间距离。从头算的计算结果与先前的结果一致,即预测X +和A(+)状态之间的圆锥形相交接缝比阳离子基态高大约2600 cm(-1),并证明了在较大的核间距离处存在潜在的最小值通过低势垒连接到X +和A(+)状态的主极点。

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