Chiral effective field theory for nuclear matter
André Lacour, Ulf-G. Meißner, J. A. Oller, J. Nieves, E. Oset, M. J. Vicente Vacas
Abstract
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André Lacour, Ulf-G. Meißner, J. A. Oller, J. Nieves, E. Oset, M. J. Vicente Vacas
Abstract
Open-access reader
We report on the recent developments of a new effective field theory for nuclear matter [1, 2, 3]. We present first the nuclear matter chiral power counting that takes into account both short- and long-range inter-nucleon interactions. It also identifies non-perturbative strings of diagrams, related to the iteration of nucleon-nucleon interactions, which have to be re-summed. The methods of unitary chiral perturbation theory has been shown to be a useful tool in order to perform those resummations. Results up to next-to-leading order for the ground state energy per particle of nuclear matter, the in-medium chiral quark condensate and pion self-energy are discussed.
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We report on the recent developments of a new effective field theory for nuclear matter [1, 2, 3]. We present first the nuclear matter chiral power counting that takes into account both short- and long-range inter-nucleon interactions. It also identifies non-perturbative strings of diagrams, related to the iteration of nucleon-nucleon interactions, which have to be re-summed. The methods of unitary chiral perturbation theory has been shown to be a useful tool in order to perform those resummations. Results up to next-to-leading order for the ground state energy per particle of nuclear matter, the in-medium chiral quark condensate and pion self-energy are discussed.
Key concepts: Nuclear matter, Physics, Effective field theory, Chiral perturbation theory, Unitary state, Pion, Nucleon, Particle physics