Collisional quantum interference (CQI) on the intramolecular rotational energy transfer is observed in an experiment with a static cell, and the integral interference angles are measured. To obtain more accurate information, an experiment with a molecular beam is carried out, and thereby the relationship between the differential interference angle and the scattering angle is obtained. Based on the first-Born approximation of time-dependent perturbation theory, the theoretical model of CQI is developed in an atom-diatom system in the condition of the molecular beam, with the long-range interaction potential taken into account. The method of measuring correctly the differential interference angle is presented. The tendencies of the differential interference angle changing with the impact parameter and relative velocity are discussed. The theoretical model presented here is important for understanding or performing the experiment in the molecular beam.
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Department of Physics, College of Science, Liaoning Technical UniversityDepartment of Physics, College of Science, Liaoning Technical University
王伟丽
苗刚
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School of Physics and Mechanical and Electrical, Inner Mongolia University For the NationalitiesDepartment of Physics, College of Science, Liaoning Technical University
苗刚
陈跃辉
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Department of Physics, College of Science, Liaoning Technical UniversityDepartment of Physics, College of Science, Liaoning Technical University
陈跃辉
唐丹
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Department of Physics, College of Science, Liaoning Technical UniversityDepartment of Physics, College of Science, Liaoning Technical University
唐丹
马凤才
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Faculty of Physics, Liaoning UniversityDepartment of Physics, College of Science, Liaoning Technical University