Description of inclusive $(d,d^{\prime}x)$ reaction with the semiclassical distorted wave model

arxiv(2023)

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摘要
The description of deuteron-induced inclusive reactions has been an important subject in direct nuclear reaction studies and nuclear data science. For proton-induced inclusive processes, the semiclassical distorted wave model (SCDW) is one of the most successful models based on quantum mechanics. We improve SCDW for deuteron-induced inclusive processes and clarify the importance of the proper treatment of the kinematics of the deuteron inside a nucleus. The double differential cross section (DDX) of the inclusive deuteron-emission process $(d,d^{\prime}x)$ is described by one-step SCDW. The calculated DDXs of $(d,d^{\prime}x)$ reproduce experimental data by taking into account the changes in the kinematics of the deuteron due to the distorting potential, in the small energy-transfer region and at forward angles. It is confirmed that the proper treatment of the changes in the kinematics of the deuteron inside a nucleus is necessary to reproduce experimental data. The effect of the changes on the DDX of $(d,d^{\prime}x)$ is significant compared to the proton-induced inclusive process $(p,p^{\prime}x)$ because of the stronger distortion effect on the deuteron.
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