Abstract

We study the phase-space dependence of 2p-2h excitations in neutrino scattering using the relativistic Fermi gas model [1]. We follow a similar approach to Refs. [2, 3], but focusing in the phase-space properties, comparing with the non-relativistic model of [4]. A careful mathematical analysis of the angular distribution function for the outgo ing nucleons is performed. Our goals are to optimize the CPU time of the 7D integral to compute the hadron tensor in neutrino scattering, and to conciliate the different relativistic and non relati vistic models by describing general properties independently of the two-body current. For some emission angles the angular distribution becomes infinite in the Lab system, and we derive a method to in tegrate analytically around the divergence. Our results show that the frozen approximation, obtained by neglecting the momenta of the two initial nucleons inside the integral of the hadron tensor, reproduces fairly the exact response functions for constant current matrix elements.

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