5 papers
Nucleon axial-vector form factor and radius from radiatively-corrected antineutrino scattering data
Oleksandr Tomalak, Aaron S. Meyer, Clarence Wret +3
The nucleon axial-vector form factor, , is critical to determine the electroweak interactions of leptons with nucleons. Important examples of processes influenced by are…
The Nucleon Axial Form Factor from Elementary Target Data
A. S. Meyer, T. Cai, M. Moore +40
Precise neutrino-nucleon amplitudes are essential ingredients for predicting neutrino event rates in current and upcoming long-baseline neutrino oscillation experiments. A common n…
Invariant amplitudes, unpolarized cross sections, and polarization asymmetries in (anti)neutrino-nucleon elastic scattering
Kaushik Borah, Minerba Betancourt, Richard J. Hill +2
At leading order in weak and electromagnetic couplings, cross sections for (anti)neutrino-nucleon elastic scattering are determined by four nucleon form factors that depend on the…
Constraints on new physics with (anti)neutrino-nucleon scattering data
Oleksandr Tomalak, Minerba Betancourt, Kaushik Borah +2
New physics contributions to the (anti)neutrino-nucleon elastic scattering process can be constrained by precision measurements, with controlled Standard Model uncertainties. In a…
General Heavy WIMP Nucleon Elastic Scattering
Qing Chen, Gui-Jun Ding, Richard J. Hill
Heavy WIMP (weakly-interacting-massive-particle) effective field theory is used to compute the WIMP-nucleon scattering rate for general heavy electroweak multiplets through order $…