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arXiv:2502.18872·v2·Nuclear Theory

Deuteron-Deuteron Interaction and Correlation Function

Duo-Lun Ge🇨🇳 · Zhi-Wei Liu🇨🇳 · Jun-Xu Lu🇨🇳 · Li-Sheng Geng🇨🇳

Abstract

The interaction between deuterons (-) is pivotal for understanding the characteristics of certain light nuclei from the perspective of the deuteron cluster and achieving a precise reproduction of - fusion cross sections. In this work, we construct a new set of elastic - interactions by fitting the phase shifts using potentials parameterized in a Woods-Saxon shape. Then, the correlation functions are calculated with the obtained potential and compared with the recent measurements by the STAR collaboration. We find that the - phase shifts and the correlation functions are internally consistent, confirming that correlation functions can provide cross-check for the - interaction. In addition, both the bound state and the repulsive interaction contribute to the observed suppression in the measured correlation function. Moreover, we demonstrate that the -wave contribution of the correlation functions cannot be neglected, especially in determining the source size.

Comments: 7 pages, 4 figures, 1 table; accepted for publication in Physical Review C

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