arXiv:2607.09856·v1·High Energy Physics — Phenomenology
Counting b-jets at the FCC-ee as a probe of top-quark flavor physics
Shaouly Bar-Shalom🇮🇱 · Jose Wudka🇺🇸
Abstract
We explore the sensitivity of a future FCC-ee to multi-TeV new physics (NP) that can generate vector, scalar and tensor flavor-changing (FC) contact interactions ( for ), probed via single top-quark production, (+ c.c.) and leading (following the top-quark decay) to two- and four-jet signals, , where denotes any non-jet final-state particles. Our analysis exploits an approximately conserved Standard Model (SM) quantum number introduced in [1] and termed "-Parity" (), which is applicable to scattering processes of the type , where and are the number of produced -jets and light-jets ( and/or gluons) and . The FC four-fermion interactions can generate distinct -odd () signals in these multi-jet events, for which the only significant SM background stems from -jet misidentification. We demonstrate that the FCC-ee, operating at a GeV (the run phase) with high luminosity and excellent flavor-tagging performance, is an ideal platform to search for these -odd signatures. Indeed, by simply counting the number of final-state -jets, the FCC-ee can probe NP scales of TeV for the new heavy states that generate the vector, scalar and tensor and/or interactions. This reach, remarkably about 40 times the assumed FCC-ee center-of-mass energy, improves upon current bounds on some of these four-fermion operators by an order of magnitude and it critically relies on high-purity b-jet tagging.
Comments: 18 pages, 6 figures, 5 tables