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Finite Nuclei in the Quark-Meson Coupling Model
J R Stone1,2, P A M Guichon3, P G Reinhard4
1Department of Physics, University of Oxford, Oxford OX1 3PU, United Kingdom.
This study introduces the effective quark-meson coupling (QMC) energy density functional (EDF) for nuclear structure. The QMC EDF offers a novel approach to nuclear medium effects, achieving results comparable to Skyrme EDFs with fewer parameters.
Area of Science:
- Nuclear Physics
- Quantum Chromodynamics
- Hadron Structure
Background:
- Nuclear structure calculations rely on energy density functionals (EDFs).
- Existing EDFs, like Skyrme, often require numerous parameters and fine-tuning.
- A microscopic approach considering nucleon structure modifications is needed.
Purpose of the Study:
- To apply the effective quark-meson coupling (QMC) energy density functional (EDF) for the first time.
- To investigate ground state properties of even-even nuclei using the QMC EDF.
- To compare the performance of the QMC EDF with established Skyrme EDFs.
Main Methods:
- Utilized the nonrelativistic Hartree-Fock+BCS framework.
- Employed an EDF derived from a quark model of hadron structure.
- Incorporated nuclear medium effects via modifications to nucleon internal structure.
Main Results:
- The QMC EDF successfully studied a wide range of ground state properties for even-even nuclei.
- Achieved agreement with experimental data comparable to representative Skyrme EDFs.
- Demonstrated that the QMC EDF naturally derives density dependence and spin-orbit terms.
Conclusions:
- The QMC EDF provides a promising, parameter-efficient alternative for nuclear structure studies.
- Its microscopic derivation offers a clear physics basis for its adjustable parameters.
- The QMC EDF shows potential for describing both finite nuclei and nuclear matter without further adjustment.
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