CONSTRAINING THE SYMMETRY ENERGY: A JOURNEY IN THE ISOSPIN PHYSICS FROM COULOMB BARRIER TO DECONFINEMENT

Author:

DI TORO M.12,COLONNA M.12,GRECO V.12,FERINI G.12,RIZZO C.12,RIZZO J.12,BARAN V.3,GAITANOS T.4,PRASSA V.5,WOLTER H. H.6,ZIELINSKA-PFABE M.7

Affiliation:

1. Laboratori Nazionali del Sud INFN, I-95123 Catania, Italy

2. Physics-Astronomy Dept., University of Catania, Italy

3. Dept. of Theoretical Physics, Bucharest Univ., and NIPNE-HH, Magurele, Bucharest, Romania

4. Inst. für Theoretische Physik, Universität Giessen, D-35312 Giessen, Germany

5. Dept. of Theoretical Physics, Aristotle Univ. of Thessaloniki, Gr-54124, Greece

6. Dept. für Physik, Universität München, D-85748 Garching, Germany

7. Smith College, Northampton, Mass., USA

Abstract

Heavy Ion Collisions (HIC) represent a unique tool to probe the in-medium nuclear interaction in regions away from saturation. In this work we present a selection of reaction observables in dissipative collisions particularly sensitive to the isovector part of the interaction, i.e.to the symmetry term of the nuclear Equation of State (EoS). At low energies the behavior of the symmetry energy around saturation influences dissipation and fragment production mechanisms. We will first discuss the recently observed Dynamical Dipole Radiation, due to a collective neutron-proton oscillation during the charge equilibration in fusion and deep-inelastic collisions. Important Iso - EOS are stressed. Reactions induced by unstable 132 Sn beams appear to be very promising tools to test the sub-saturation Isovector EoS. New Isospin sensitive observables are also presented for deep-inelastic, fragmentation collisions and Isospin equilibration measurements (Imbalance Ratios). The high density symmetry term can be derived from isospin effects on heavy ion reactions at relativistic energies (few AGeV range), that can even allow a "direct" study of the covariant structure of the isovector interaction in the hadron medium. Rather sensitive observables are proposed from collective flows and from pion/kaon production. The possibility of the transition to a mixed hadron-quark phase, at high baryon and isospin density, is finally suggested. Some signatures could come from an expected "neutron trapping" effect. The importance of studying violent collisions with radioactive beams from low to relativistic energies is finally stressed.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Nuclear and High Energy Physics

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