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arXiv:1708.00878·v2·Nuclear Theory

Coarse graining the Bethe-Goldstone equation: nucleon-nucleon high momentum components

I. Ruiz Simo · R. Navarro Perez · J.E. Amaro · E. Ruiz Arriola

Abstract

The delta-shell representation of the nuclear force allows a simplified treatment of nuclear correlations. We show how this applies to the Bethe-Goldstone equation as an integral equation in coordinate space with a few mesh points, which is solved by inversion of a 5-dimensional square matrix in the single channel cases and a matrix for the tensor-coupled channels. This allows us to readily obtain the high momentum distribution, for all partial waves, of a back-to-back correlated nucleon pair in nuclear matter. We find that the probability of finding a high-momentum correlated neutron-proton pair is about 18 times that of a proton-proton one, as a result of the strong tensor force, thus confirming in an independent way previous results and measurements.

Comments: Equation (2) is wrong, and all the results of the article based on that equation for the coupled nucleon partial waves are, consequently, wrong as well

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