arXiv · 2305.16848
Perturbative aspects of mass dimension one fermions non-minimally coupled to electromagnetic field
Abstract
This paper addresses perturbative aspects of the renormalization of a fermion with mass dimension one non-minimally coupled to the electromagnetic field. Specifically, we calculate the one-loop corrections to the propagators and vertex functions of the model and determine the one-loop beta function of the non-minimal electromagnetic coupling. Additionally, we perform calculations of the two-loop corrections to the gauge field propagator, demonstrating that it remains massless and transverse up to this order. We also find that the non-minimal electromagnetic coupling can exhibit asymptotic freedom if a certain condition is satisfied. As a potential dark matter candidate, these findings suggest that the field may decouple at high energies. This aspect holds significance for calculating the relic abundance and freeze-out temperature of the field, particularly in relation to processes involving the ordinary particles of the Standard Model.
Explore related subjects
Keep this discovery
Willian Carvalho, M. Dias, A. C. Lehum, J. M. Hoff da Silva. 2023-05-26. Perturbative aspects of mass dimension one fermions non-minimally coupled to electromagnetic field. https://doi.org/10.1209/0295-5075%2Facf686
Cite the original work for its findings. Save a collection to share your selection of sources.