Naturalness in the quark-meson coupling model
arXiv:nucl-th/9704047 · doi:10.1016/S0370-2693(97)00693-X
Abstract
The quark-meson coupling (QMC) model is examined using Georgi's ``naive dimensional analysis''. We argue that the QMC model is quite natural as an effective field theory for nuclei.
11pages, no fig., submitted to Phys. Lett. B
Cited by in corpus (22)
- Nucleon and hadron structure changes in the nuclear medium and impact on observables
- The quark-meson coupling model for Lambda, Sigma and Xi hypernuclei
- Hybrid stars in the quark-meson coupling model with superconducting quark matter
- Kaon condensation in the quark-meson coupling model and compact stars
- Extended quark mean-field model for neutron stars
- Compact stars within an asy-soft quark-meson-coupling model
- Warm asymmetric matter in the Quark Meson Coupling Model
- Effect of nucleon structure variation on the longitudinal response function
- Critical analysis of quark-meson coupling models for nuclear matter and finite nuclei
- Excluded Volume Effects in the Quark Meson Coupling Model
- Stellar matter in the Quark-Meson-Coupling Model with neutrino trapping
- Nuclear symmetry energy in a modified quark meson coupling model
- Low density instabilities in asymmetric nuclear matter within QMC with -meson
- Quark and gluon condensates in the quark-meson coupling model
- The quark mean field model with pion and gluon corrections
- The nucleon and mesons effective masses in the Relativistic Mean-Field Theory
- Self-consistent quantum effects in the quark meson coupling model
- Equation of state of hadronic matter with dibaryons in an effective quark model
- Nuclear Matter and Finite Nuclei in the Effective Chiral Model
- Scalar and vector meson propagation in asymmetric nuclear matter
- Rotating compact star with superconducting quark matter
- Two-scale scalar mesons in nuclei