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Experimental signatures of Kalb-Ramond-like particles

Published 16 Jan 2025 in hep-ph and hep-th | (2501.09836v3)

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 SS matrix for e<sup>−</sup>+e<sup>+</sup>→ℓ<sup>−</sup>+ℓ<sup>+e<sup>-</sup> + e<sup>+</sup> \rightarrow \ell<sup>-</sup> + \ell<sup>+ scattering with ℓ≠e\ell \neq e 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 s=136.23\sqrt{s} = 136.23~GeV, namely gPV/Λ≲6.3×10<sup>−13</sup> eV<sup>−1g_{\rm PV}/\Lambda \lesssim 6.3 \times 10<sup>{-13}</sup> \, {\rm eV}<sup>{-1} and gT≲1.3×10<sup>−12</sup>(m/eV)g_{\rm T} \lesssim 1.3 \times 10<sup>{-12}</sup> \left( m/{\rm eV} \right), both for m≪sm \ll \sqrt{s} (here Λ\Lambda is a characteristic energy scale). These limits can be improved in upcoming lepton colliders due to enhanced precision, as well as higher energies.

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