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The photoelectron spectrum of elusive cyclic-N-3 and characterization of the potential energy surface and vibrational states of the ion

机译:难以捉摸的环状N-3的光电子能谱和势能面的表征以及离子的振动态

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A potential energy surface is constructed for the ground X (1)A(1) electronic state of cyclic-N-3(+) based on three-dimensional spline interpolation of ab initio points. The vibrational states of this molecular ion are calculated in the range up to 14 500 cm(-1) using hyperspherical coordinates and the coupled-channel (sector-adiabatic) approach. All the vibrational states are analyzed and assigned. The Franck-Condon overlaps of these states with the vibrational states of the neutral are calculated to predict the photoelectron spectrum of cyclic-N-3. Peak intensities are governed by the nodal structure of the vibrational wave functions and reflect the large geometric phase effect predicted for cyclic-N-3. Experimental validation may shed light on the existence of this elusive molecule and confirm the magnitude of the geometric phase effect. (c) 2006 American Institute of Physics.
机译:基于从头算点的三维样条插值,为循环N-3(+)的X(1)A(1)电子态构建了势能面。使用超球坐标和耦合通道(扇形绝热)方法,可在高达14500 cm(-1)的范围内计算此分子离子的振动状态。分析所有振动状态并分配。计算这些状态与中性振动状态的弗兰克-康登重叠,以预测环状N-3的光电子能谱。峰值强度由振动波函数的节点结构控制,并反映出对循环N-3预测的较大几何相位效应。实验验证可以揭示这种难以捉摸的分子的存在,并确定几何相位效应的大小。 (c)2006年美国物理研究所。

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