arXiv:nucl-th/0106032·v2·Nuclear Theory
Relativistic approaches to structure functions of nuclei
S.A. Gurvitz🇮🇱 · A.S. Rinat🇮🇱
Abstract
We employ a propagator technique to derive a new relativistic expansion of the structure function of a nucleus, composed of point-nucleons. We exploit non-relativistic features of low-momentum nucleons in the target and only treat relativistically the nucleon after absorption of a high-momentum virtual photon. The new series permits a 3-dimensional reduction of each term and a formal summation of all Final State Interaction terms. We then show that a relativistic structure function can be obtained from its non-relativistic analog by a mere change of a scaling variable and an addition of an energy shift. We compare the obtained result with an ad hoc generalized Gersch-Rodriguez-Smith theory, previously used in computations of nuclear structure functions.
Comments: Comparison with data is included, to be published in PRC, Feb. 2002