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Anisotropy of photofragment recoil as a function of dissociation lifetime,excitation frequency,rotational level,and rotational constant

机译:光碎片反冲力的各向异性与解离寿命,激发频率,旋转水平和旋转常数的关系

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摘要

Quantum mechanical calculations of photofragment angular distributions have been performed as a function of the frequency of excitation,the lifetime of the dissociative state,the rotational level,and the rotational constant.In the limit of high J values and white,incoherent excitation,the general results are found to agree exactly with both those of Mukamel and Jortner [J.Chem.Phys.61,5348 (1974)] and those of Jonah [J.Chem.Phys.55,1915 (1971)].Example calculations describe how the anisotropy is dependent on the degree of broadening,the rotational constant,the initial rotational level,and the frequency of excitation.Applications are also made to interpret experimental results on the photodissociation of ClO via the 11-0,10-0,and 6-0 bands of the A ~2PI_(3/2)-X ~2PI_(3/2) transition and on the photodissociation of O_2 via the 0-0 band of the E ~3SIGMA_u~--X ~3SIGMA_g~-transition.
机译:光碎片角分布的量子力学计算是根据激发频率,解离态寿命,旋转水平和旋转常数来进行的。在高J值和白色,非相干激发的限制下,一般结果与Mukamel和Jortner [J.Chem.Phys.61,5348(1974)]和Jonah [J.Chem.Phys.55,1915(1971)]的结果完全一致。示例计算描述了如何各向异性取决于加宽程度,旋转常数,初始旋转能级和激发频率。还用于解释ClO通过11-0、10-0和6光解离的实验结果。 A〜2PI_(3/2)-X〜2PI_(3/2)跃迁的-0谱带以及通过E〜3SIGMA_u〜--X〜3SIGMA_g〜跃迁的0-0谱带对O_2进行光解离。

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