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arXiv:nucl-th/9601047·v1·Nuclear Theory

Temperature Dependence of Pair Correlations in Nuclei in the Iron-Region

K. Langanke (Caltech)🇺🇸 · D.J. Dean (ORNL)🇺🇸 · P.B. Radha (Caltech)🇺🇸 · S.E. Koonin (Caltech)🇺🇸

Abstract

We use the shell model Monte Carlo approach to study thermal properties and pair correlations in Fe and in Cr. The calculations are performed with the modified Kuo-Brown interaction in the complete model space. We find generally that the proton-proton and neutron-neutron pairing correlations, which dominate the ground state properties of even-even nuclei, vanish at temperatures around 1 MeV. This pairing phase transition is accompanied by a rapid increase in the moment of inertia and a partial unquenching of the M1 strength. We find that the M1 strength totally unquenches at higher temperatures, related to the vanishing of isoscalar proton-neutron correlations, which persist to higher temperatures than the pairing between like nucleons. The Gamow-Teller strength is also correlated to the isoscalar proton-neutron pairing and hence also unquenches at a temperature larger than that of the pairing phase transition.

Comments: RevTeX and ps figures

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