Loop effect with vector mediator in the coherent neutrino-nucleus scattering
Abstract
The observation of the coherent elastic neutrino-nucleus scattering (CENS) provides us opportunities to explore a wide class of new physics. In the Standard Model (SM), the CENS process arises from the vector and axial-vector neutral currents through the exchange of boson and the axial-vector current contribution turns out to be subdominant. It is thus natural to consider the extra contributions to CENS from more generic new physics beyond the SM with (axial-)vector interactions associated with a new vector mediator . Besides the ordinary CENS, the active neutrinos can convert into a new exotic fermion through the process mediated by without violating the coherence. It would be interesting to consider the implication of this conversion for the new fermion sector beyond the SM. We consider the framework of a simplified neutrino model in which a new Dirac fermion interacts with active neutrinos and a leptophobic vector mediator . We evaluate both the tree-level and loop-level contributions to the CENS and in particular the loop diagrams produce active neutrino elastic scattering process with the fermion inside the loops. When the interaction between and the SM quarks is vector type and axial-vector type, the CENS processes are respectively dominated by the tree-level and loop-level contributions. We investigate the constraints on the model parameters by fitting to the COHERENT data, assuming a wide range of . The parameter space with larger than the maximal energy of incoming neutrinos can be constrained by including the loop-level contribution. More importantly, the inclusion of loop diagrams can place constraint on axial-vector interaction whose tree-level process is absent in the coherent neutrino-nucleus scattering.
Keywords
Cite
@article{arxiv.2108.02341,
title = {Loop effect with vector mediator in the coherent neutrino-nucleus scattering},
author = {Wei Chao and Tong Li and Jiajun Liao and Min Su},
journal= {arXiv preprint arXiv:2108.02341},
year = {2021}
}
Comments
19 pages, 4 figures. version published in PRD