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Recent Progress in Quantum Hadrodynamics
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Quantum hadrodynamics (QHD) is a framework for describing the nuclear many-body problem as a relativistic system of baryons and mesons. Motivation is given for the utility of such an approach and for the importance of basing it on a local, Lorentz-invariant lagrangian density. Calculations of nuclear matter and finite nuclei in both renormalizable and nonrenormalizable, effective QHD models are discussed. Connections are made between the effective and renormalizable models, as well as between relativistic mean-field theory and more sophisticated treatments. Recent work in QHD involving nuclear structure, electroweak interactions in nuclei, relativistic transport theory, nuclear matter under extreme conditions, and the evaluation of loop diagrams is reviewed.
Forward citations
Cited by 6 Pith papers
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Speed and accuracy for long signals: Frequency-domain effective-one-body waveforms for compact binary coalescences
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Compact star and compact star matter properties from a baryonic extended linear sigma model with explicit chiral symmetry breaking
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Nuclear matter properties and neutron star structures from an extended linear sigma model
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