Study the Effect of Isospin Dependence and Short-Range Correlations through Inclusive Nuclear Structure for 28Si and 32S Nuclei
DOI:
https://doi.org/10.24996/ijs.2026.67.9.16Keywords:
Short Range Correlation (SRC), Charge Density Distribution (CDD), Core Polarization Effects, Tassie-Model, Transition DensitiesAbstract
Pair densities and the correlation functions that go along with them are crucial resources for successfully integrating many-body correlations into nuclear theories. The explicit impacts of spin and isospin dependence on nuclear charge density distributions are examined in this work. The folding model is used to compute the density of charge distribution, involving each short-range correlation (SRC) and tensor correlation and uses an effective two-body densities formula that accounts for spin and isospin interactions. Calculations were made for the 28Si and 32S nuclei elastic electron scattering form factors F(q) and the root of the mean square charged radii 〈r2〉(1/2) . Additionally, the inelastic longitudinal electron scattering form factors associated with the isoscaler transitioning, T = 0 of the ( and ( were calculated, including core polarization effects using the Tassie model. The results exhibit good agreement with experimental data, demonstrating the accuracy and robustness of the adopted theoretical framework.
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