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BPS Skyrme model and nuclear binding energies

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arxiv 1312.2960 v1 pith:FYH4JNRF submitted 2013-12-10 nucl-th hep-phhep-th

BPS Skyrme model and nuclear binding energies

classification nucl-th hep-phhep-th
keywords energiesbindingmodelnuclearskyrmeisospinaccountingagreement
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We use the classical BPS soliton solutions of the BPS Skyrme model together with corrections from the collective coordinate quantization of spin and isospin, the electrostatic Coulomb energies, and a small explicit breaking of the isospin symmetry - accounting for the proton-neutron mass difference - to calculate nuclear binding energies. We find that the resulting binding energies are already in excellent agreement with their physical values for heavier nuclei, demonstrating thereby that the BPS Skyrme model is a distinguished starting point for a detailed quantitative investigation of nuclear and low-energy strong interaction physics.

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  1. Electroweak form factors of large nuclei as BPS skyrmions

    nucl-th 2025-10 conditional novelty 5.0

    With one fitted radial parameter, the BPS Skyrme model reproduces electromagnetic and weak form factors of heavy nuclei up to about 150 MeV, including PREX and CREX data.