Export citation

Export citation

Choose format for download:

Download Citation

    Computing neutrino cross sections from Euclidean responses

    A. Nikolakopoulos1,* and N. Rocco2,3,†

    • *Contact author: anikolak@uw.edu
    • †Contact author: rocco@ific.us.es

    Phys. Rev. C 114, 045502 – Published 5 October, 2026

    DOI: https://doi.org/10.1103/sgcx-cn3w

    Abstract

    Energy-integrated neutrino cross sections are integrals of nuclear responses weighted with kinematic prefactors. We decompose the prefactors into a limited set of functions of energy transfer and show that the relevant integrals are the moments of the responses, and integrals weighted with 1/(a+ω)n with n≤2. These can be directly obtained from the Euclidean response, avoiding the need for inversion of the Laplace transform. As a proof of concept, we study the procedure with toy-model responses for the quasielastic peak. We show that the different contributions can be straightforwardly organized in terms of relative importance, and how flux-averaged cross sections can be obtained. Using a realistic model for the response and numerical uncertainty, we show that it is feasible to obtain the required integrals from the Euclidean response, with large uncertainties only for the third moment. Due to kinematic restrictions, the integrals contain contributions from the unphysical region for neutrino scattering, coming from high-momentum nucleons. We show that (in the absence of two-body currents) robust corrections for this contamination are obtained from the single-nucleon momentum distribution. These results present an opportunity to compute certain neutrino cross sections with ab initio methods with controlled uncertainties.

    Physics Subject Headings (PhySH)

    Authorization Required

    We need you to provide your credentials before accessing this content.

    References (Subscription Required)

    Outline

    Information

    Sign In to Your Journals Account

    Filter

    Filter

    Article Lookup

    Enter a citation