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Improved nuclear matter calculations from chiral low-momentum interactions
Physical Review C · 2011 · Vol. 83(3)
K. Hebeler✉(TRIUMF)S. K. Bogner(National Superconducting Cyclotron Laboratory)R. J. Furnstahl(The Ohio State University)A. Nogga(Forschungszentrum Jülich)A. Schwenk(Technical University of Darmstadt)
Abstract
We present nuclear matter calculations based on low-momentum interactions derived from chiral effective field theory potentials. The current calculations use an improved treatment of the three-nucleon force (3NF) contribution that includes a corrected combinatorial factor beyond Hartree-Fock that was omitted in previous nuclear matter calculations. We find realistic saturation properties using parameters fit only to few-body data, but with larger uncertainty estimates from cutoff dependence and the 3NF parametrization than in previous calculations.
Nuclear physics research studiesQuantum Chromodynamics and Particle InteractionsParticle physics theoretical and experimental studiesNuclear matterPhysicsCutoffParametrization (atmospheric modeling)Nuclear physicsMomentum (technical analysis)Saturation (graph theory)NucleonQuantum electrodynamicsStatistical physics
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References
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Nuclear Physics A · 2004 · 649 citations
Three-nucleon forces from chiral effective field theory
Physical Review C · 2002 · 594 citations
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Physical Review C · 1998 · 2,372 citations
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Physical Review C · 1994 · 496 citations
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