Large as a Sign of Vector-Like Quarks in Light of the Mass
arXiv:2204.05962 · doi:10.1103/PhysRevD.106.L031704
Abstract
The rare flavour changing top quark decay is a clear sign of new physics and experimentally very interesting due to the huge number of top quarks produced at the LHC. However, there are few (viable) models which can generate a sizable branching ratio for -- in fact vector-like quarks seem to be the only realistic option. In this paper, we investigate all three representations (under the Standard Model gauge group) of vector-like quarks (, and ) that can generate a sizable branching ratio for without violating bounds from physics. Importantly, these are exactly the three vector-like quarks which can lead to a sizable positive shift in the prediction for mass, via the couplings to the top quark also needed for a sizable Br(). Calculating and using the one-loop matching of vector-like quarks on the Standard Model Effective Field Theory, we find that Br() can be of the order of , and for , and , respectively and that in all three cases the large mass measurement can be accommodated.
8 pages, 2 figures + supplemental material. v2: Accepted to PRD, discussion of future lepton colliders added, units corrected in eq II.9, further references added
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