arXiv:nucl-th/9407001·v1·Nuclear Theory
Relativistic treatment of spin-transfer observables in quasielastic scattering
C.J. Horowitz🇺🇸 · J. Piekarewicz🇺🇸
Abstract
We calculate all spin-transfer observables for the quasielastic reaction in a relativistic plane-wave impulse approximation. The nuclear-structure information is contained in a large set of nuclear-response functions that are computed in nuclear matter using a relativistic random-phase approximation to the Walecka model. A reduced value of the nucleon mass in the medium induces important dynamical changes in the residual isovector interaction relative to its nonrelativistic counterpart. As a result, good agreement is found for all spin observables --- including the spin-longitudinal to spin-transverse ratio --- when compared to the original (~fm) NTOF experiment. In contrast, the spin-longitudinal to spin-transverse ratio is underpredicted at ~fm and overpredicted at ~fm. We comment on the role of distortions as a possible solution to this discrepancy.
Comments: 21 pages and 11 (uuencoded) postscript figures appended at the end, FSU-SCRI-94-62