arXiv Analytics

Sign in

arXiv:1907.05814 [nucl-th]AbstractReferencesReviewsResources

Symmetric nuclear matter from the strong interaction

M. Leonhardt, M. Pospiech, B. Schallmo, J. Braun, C. Drischler, K. Hebeler, A. Schwenk

Published 2019-07-12Version 1

We study the equation of state of symmetric nuclear matter at zero temperature over a wide range of densities using two complementary theoretical approaches. At low densities up to twice nuclear saturation density, we compute the energy per particle based on modern nucleon-nucleon and three-nucleon interactions derived within chiral effective field theory. For higher densities we derive for the first time constraints in a Fierz-complete setting directly based on quantum chromodynamics using functional renormalization group techniques. We find remarkable consistency of the results obtained from both approaches as they come together in density and the natural emergence of a maximum in the speed of sound $c_S$ at supranuclear densities with a value beyond the asymptotic $c_S^2 = 1/3$. The presence of a maximum appears tightly connected to the formation of a diquark gap.

Related articles: Most relevant | Search more
arXiv:0712.1969 [nucl-th] (Published 2007-12-12, updated 2007-12-13)
Delta-excitations and the three-nucleon force
arXiv:0812.4444 [nucl-th] (Published 2008-12-23, updated 2009-09-21)
Three-Nucleon Low-Energy Constants from the Consistency of Interactions and Currents in Chiral Effective Field Theory
arXiv:1403.2510 [nucl-th] (Published 2014-03-11, updated 2014-03-12)
The reaction pi N -> pi pi N in chiral effective field theory with explicit Delta(1232) degrees of freedom