Dressing two nucleons at the same time

A. N. Kvinikhidze and B. Blankleider
Phys. Rev. C 48, 25 – Published 1 July 1993
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Abstract

At intermediate energies, the interaction of two nucleons with pions is often described in terms of nonrelativistic time-ordered perturbation theory. The field theory is usually further simplified by restricting the Hilbert space to states having some maximum number of pions. One outstanding difficulty with such approaches is an inconsistent treatment of the dressed two-nucleon propagator. In the NNNN model, for example, states can have at mos t one pion, so that only one of the nucleons is allowed to undergo dressing at any one time. Thus each nucleon cannot obtain its full dressing and this leads to problems of wave function normalization. We have found a way to dress both nucleons at the same time, where each nucleon retains its full dressing. The method, involving a convolution integral, determines the full two-nucleon dressed propagator in a practical but exact way. Numerical calculations have been performed using a model of the πN interaction in the one-pion approximation. We find a significant difference between the fully dressed two-nucleon propagator and the different-time propagator as used in NNNN models.

  • Received 15 January 1993

DOI:https://doi.org/10.1103/PhysRevC.48.25

©1993 American Physical Society

Authors & Affiliations

A. N. Kvinikhidze

  • Mathematical Institute of Georgian Academy of Sciences, Z. Rukhadze 1, 380093 Tbilisi, Georgia

B. Blankleider

  • Institut für Physik, University of Basel, CH-4056 Basel, Switzerland
  • Paul Scherrer Institute, CH-5232 Villigen PSI, Switzerland

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Vol. 48, Iss. 1 — July 1993

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