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Communication: First observation of ground state I(2P3/2) atoms from the CH3I photodissociation in the B-band

机译:交流:从B波段CH3 I光解离中对基态I(2 P3 / 2 )原子的首次观察

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摘要

The photodissociation of CH3I in the second absorption band (the B-band) has been studied at the wavelength 199.11 nm, coincident with the 301 3R1(E)←(1A1) CH3I vibronic transition, using a combination of slice imaging and resonance enhanced multiphoton ionization detection of the CH3 fragment. The kinetic energy and angular distributions of the recoiling CH3 fragment confirm a major predissociation dynamics channel as a result of the interaction between the bound 3R1 Rydberg state and the repulsive 3A1(E) state − ascribed to the A-band − yielding CH3 fragments in correlation with spin-orbit excited I*(2P1/2) atoms. In addition, first evidence of a non-negligible population of ground state I(2P3/2) atoms in the CH3 fragment slice images, suggests a secondary predissociation mechanism via interaction between the 3R1 Rydberg state and the repulsive A-band 1Q1 state. © 2011 American Institute of Physics
机译:研究了CH3 在第二吸收带(B波段)中的光解离,其波长为199.11 nm,与301 3 R1 (E)←(1 < / sup> A1 )CH3 的振动跃迁,结合切片成像和共振增强的多光子电离检测CH3 片段。反冲CH3 片段的动能和角分布确定了主要的离解动力学通道,这是由于结合的3 R1 Rydberg态与排斥3 之间相互作用的结果属于A波段的A1 (E)状态-产生与自旋轨道激发的I *(2 P1 / 2 )原子相关的CH3 碎片。此外,在CH3 片段切片图像中存在不可忽略的基态I(2 P3 / 2 )原子团簇的第一个证据表明,通过分子之间的相互作用产生了二次预离解机制3 R1 Rydberg态和排斥性A波段1 Q1 态。 ©2011美国物理研究所

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