Published June 1996 | Version v1
Journal article

Scaling for deuteron structure functions in a relativistic light-front model

  • 1. Department of Physics and Astronomy, University of Iowa, Iowa City, Iowa 52246 (United States)
  • 2. Institut fuer Theoretische Physik II, Ruhr-Universitaet, D-4630 Bochum (Germany)

Description

Scaling limits of the structure functions [B.D. Keister, Phys. Rev. C 37, 1765 (1988)], W1 and W2, are studied in a relativistic model of the two-nucleon system. The relativistic model is defined by a unitary representation, U(Λ,a), of the Poincaracute e group which acts on the Hilbert space of two spinless nucleons. The representation is in Dirac close-quote s [P.A.M. Dirac, Rev. Mod. Phys. 21, 392 (1949)] light-front formulation of relativistic quantum mechanics and is designed to give the experimental deuteron mass and n-p scattering length. A model hadronic current operator that is conserved and covariant with respect to this representation is used to define the structure tensor. This work is the first step in a relativistic extension of the results of Hueber, Gloeckle, and Boemelburg. The nonrelativistic limit of the model is shown to be consistent with the nonrelativistic model of Hueber, Gloeckle, and Boemelburg. [D. Hueber et al. Phys. Rev. C 42, 2342 (1990)]. The relativistic and nonrelativistic scaling limits, for both Bjorken and y scaling are compared. The interpretation of y scaling in the relativistic model is studied critically. The standard interpretation of y scaling requires a soft wave function which is not realized in this model. The scaling limits in both the relativistic and nonrelativistic case are related to probability distributions associated with the target deuteron. copyright 1996 The American Physical Society

Additional details

Publishing Information

Journal Title
Physical Review. C, Nuclear Physics
Journal Volume
53
Journal Issue
6
Journal Page Range
p. 3111-3130.
ISSN
0556-2813
CODEN
PRVCAN