Volume 479 - The 11th International Workshop on Chiral Dynamics (CD2024) - Working Group 3 parallel session: Few-Body Physics
$A=2,3$ nuclear contact coefficients in the Generalized Contact Formalism
E. Proietti*, L. Marcucci and M. Viviani
*: corresponding author
Full text: pdf
Pre-published on: March 25, 2025
Published on:
Abstract
This work focuses on extracting nuclear contact coefficients for \( A = 2 \), \( A = 3 \) and \( A = 4 \) nuclei within the Generalized Contact Formalism framework. We investigate the universality of these coefficients across different nuclear systems and interaction models, using both local (in \( r \)-space) and non-local (in \( k \)-space) chiral potentials. The Hyperspherical Harmonics method is employed to calculate the nuclear wave functions from which we obtain the two-body momentum distributions and the two-body density functions, which are essential for extracting the contact coefficients. The adopted method is a rigorous ab-initio approach that can be applied to virtually any potential.

We present ratios of contact coefficients across various spin and isospin channels, highlighting their independence from the used nuclear potential. This study extends previous work where only local interaction models were employed. Furthermore, we verify whether the contact coefficient ratio between different nuclei remains consistent even when non-local potentials are considered.

Future work will extend this analysis to heavier nuclei, such as \( A = 4 \) and \( A = 6 \) nuclei.
DOI: https://doi.org/10.22323/1.479.0104
How to cite

Metadata are provided both in article format (very similar to INSPIRE) as this helps creating very compact bibliographies which can be beneficial to authors and readers, and in proceeding format which is more detailed and complete.

Open Access
Creative Commons LicenseCopyright owned by the author(s) under the term of the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.