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Nuclear matter in the derivative scalar coupling model. Energy per nucleon and a finite temperature equation of state

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dc.contributor.author Datta, B
dc.contributor.author Sahu, P. K
dc.date.accessioned 2008-09-26T16:55:31Z
dc.date.available 2008-09-26T16:55:31Z
dc.date.issued 1993-12-02
dc.identifier.citation Physics Letters B, Vol. 318, No. 2, pp. 277 - 280 en
dc.identifier.issn 0370-2693
dc.identifier.uri http://hdl.handle.net/2248/3902
dc.description Restricted Access
dc.description.abstract We calculate an equation of state of nuclear matter based on the derivative scalar coupling model proposed by Zimanyi and Moszkowski, using improved values of the saturation density and binding energy. Comparison of this model's prediction for the energy per nucleon is made with available estimates from heavy-ion collision data and with the theoretical requirement for a prompt type II supernova bounce. We also derive a finite temperature equation of state for nuclear matter based on this model en
dc.language.iso en en
dc.publisher Elsevier Science B.V. en
dc.relation.uri http://dx.doi.org/10.1016/0370-2693(93)90128-5 en
dc.subject Scalar coupling model en
dc.subject Nucleon en
dc.subject Binding energy en
dc.subject Supernova en
dc.title Nuclear matter in the derivative scalar coupling model. Energy per nucleon and a finite temperature equation of state en
dc.type Article en


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