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迟子孟, 牛清霖, 刘健. 短程关联对准弹性电子散射的影响[J]. 原子核物理评论, 2024, 41(1): 510-514. DOI: 10.11804/NuclPhysRev.41.2023CNPC18
引用本文: 迟子孟, 牛清霖, 刘健. 短程关联对准弹性电子散射的影响[J]. 原子核物理评论, 2024, 41(1): 510-514. DOI: 10.11804/NuclPhysRev.41.2023CNPC18
Zimeng CHI, Qinglin NIU, Jian LIU. Effects of Short-range Correlations on Quasielastic Electron Scattering[J]. Nuclear Physics Review, 2024, 41(1): 510-514. DOI: 10.11804/NuclPhysRev.41.2023CNPC18
Citation: Zimeng CHI, Qinglin NIU, Jian LIU. Effects of Short-range Correlations on Quasielastic Electron Scattering[J]. Nuclear Physics Review, 2024, 41(1): 510-514. DOI: 10.11804/NuclPhysRev.41.2023CNPC18

短程关联对准弹性电子散射的影响

Effects of Short-range Correlations on Quasielastic Electron Scattering

  • 摘要: 核子-核子短程关联是核物理的关键问题之一,它会导致核子动量分布出现高动量尾。本工作首先基于轴向形变相对论平均场模型构建了平均场部分原子核的谱函数,并在此基础上引入了短程关联效应的修正。然后利用谱函数在平面波脉冲近似框架内计算了单举电子散射截面,包括准弹性散射部分和Δ共振散射部分。特别是在Δ共振散射区域,通过重新考虑了核子共振态Δ(1232)的电磁结构,有效地改进了理论计算,使理论散射截面与实验数据很好地吻合。本工作进一步将单举散射截面分为短程关联的贡献和平均场的贡献。研究发现,准弹性峰和Δ共振峰不仅反映了平均场结构,而且对短程关联信息敏感。最后,本工作提出了一种从实验截面中提取原子核短程关联强度的方法。

     

    Abstract: The nucleon-nucleon short-range correlation(NN-SRC) is one of the key issues in nuclear physics that cause high-momentum tails in the nucleon momentum distributions. In this paper, the nuclear spectral functions are constructed based on the axially deformed relativistic mean-field model, and the correction of the short-range correlation effect is introduced. Then, the inclusive scattering cross sections are calculated using the nuclear spectral function and the framework of the plane wave impulse approximation, including both the quasielastic and Δ resonance parts. In particular, in the Δ resonance region, the electromagnetic structure of the nucleon resonance state Δ(1232) is reconsidered, which effectively improves the theoretical calculations that can be in better agreement with experimental data. The paper further divides the inclusive scattering cross sections into the contributions of NN-SRC and mean-field. It is found that, the quasielastic peak and Δ resonance peak not only reflect the mean-field structure but also are sensitive to NN-SRC information. Finally, we propose a method for extracting the NN-SRC strength of nuclei from experimental cross-section data.

     

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