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A slice imaging and multisurface wave packet study of the photodissociation of CH3I at 304 nm

机译:CH3I在304 nm光解离的切片成像和多面波包研究

摘要

The role of the conical intersection between the 1Q1 and 3Q0 excited states in the photodissociation of CH 3I at 304 nm is investigated drawing a comparison between the adiabatic - through direct absorption to the 3Q1 state - and non-adiabatic - via the 1Q1 → 3Q 0 conical intersection - production of I atoms in the ground 2P3/2 state. The versatility of the slice imaging technique in combination with resonance enhanced multiphoton ionization (REMPI) detection of I(2P3/2) atoms allow distinct measurements of the competing processes. The I(2P3/2) atom kinetic energy distributions (KEDs) obtained in both cases reflect inverted vibrational progressions of the ν2 umbrella mode of the CH3 co-product. The experimental results show a satisfactory agreement with multisurface wave packet calculations using a reduced dimensionality (pseudotriatomic) model carried out on the available ab initio potential energy surfaces. © 2011 the Owner Societies.
机译:研究了1Q1和3Q0激发态之间的圆锥形交点在304 nm CH 3I的光解离中的作用,并通过1Q1→3Q 0将绝热(通过直接吸收到3Q1态)和非绝热之间进行了比较。圆锥形相交-产生2P3 / 2基态的I原子。切片成像技术的多功能性与I(2P3 / 2)原子的共振增强多光子电离(REMPI)检测相结合,可以对竞争过程进行不同的测量。在这两种情况下获得的I(2P3 / 2)原子动能分布(KED)反映了CH3副产物的ν2伞模的反向振动级数。实验结果表明,使用在可用的从头算势能表面进行的降维(伪三原子)模型进行的多表面波包计算具有令人满意的一致性。 ©2011业主协会。

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