Experimental signatures of Kalb-Ramond-like particles
Abstract
We analyse phenomenological signatures of Kalb-Ramond-like particles, described by an antisymmetric rank-2 tensor, when coupled to fermionic matter. The latter is modelled by a tensor current coupled directly to the Kalb-Ramond field or by a pseudovector current coupled to the rank-1 dual of the field-strength tensor. We obtain limits on the coupling constants to fermions and mass of the Kalb-Ramond-like particles by investigating their impact on the hyperfine splittings of hydrogen, the tree-level unitarity of the matrix for scattering with and the differential cross section for Bhabha scattering. Assuming that the couplings to fermions are independent of the fermion species, the strongest 95\%-CL bounds we find are from LEP data at ~GeV, namely and , both for (here is a characteristic energy scale). These limits can be improved in upcoming lepton colliders due to enhanced precision, as well as higher energies.
Cite
@article{arxiv.2501.09836,
title = {Experimental signatures of Kalb-Ramond-like particles},
author = {P. C. Malta and J. P. S. Melo and C. A. D. Zarro},
journal= {arXiv preprint arXiv:2501.09836},
year = {2025}
}
Comments
49 pages, 4 figures; matches published version