Abstract
AbstractA muon collider would be a powerful probe of flavor violation in new physics. There is a strong complementary case for collider measurements and precision low-energy probes of lepton flavor violation (as well as CP violation). We illustrate this by studying the collider reach in a supersymmetric scenario with flavor-violating slepton mixing. We find that the collider could discover sleptons and measure the slepton and neutralino masses with high precision, enabling event reconstruction that could cleanly separate flavor-violating new physics signals from Standard Model backgrounds. The discovery reach of a high-energy muon collider would cover a comparably large, and overlapping, range of parameter space to futureμ → econversion and electron EDM experiments, and unlike precision experiments could immediately shed light on the nature of new physics responsible for flavor violation. This complementarity strengthens the case that a muon collider could be an ideal energy-frontier laboratory in the search for physics beyond the Standard Model.
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Reference127 articles.
1. G. Isidori, Y. Nir and G. Perez, Flavor Physics Constraints for Physics Beyond the Standard Model, Ann. Rev. Nucl. Part. Sci. 60 (2010) 355 [arXiv:1002.0900] [INSPIRE].
2. J. P. Delahaye et al., Muon Colliders, arXiv:1901.06150 [INSPIRE].
3. H. Al Ali et al., The Muon Smasher’s Guide, arXiv:2103.14043 [INSPIRE].
4. C. Aime et al., Muon Collider Physics Summary, arXiv:2203.07256 [INSPIRE].
5. Muon Collider collaboration, The physics case of a 3 TeV muon collider stage, arXiv:2203.07261 [INSPIRE].
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