arXiv · 2106.15647
Hints of Natural Supersymmetry in Flavor Anomalies?
Abstract
The recent results from the Fermilab muon $g-2$ experiment, as well as the persisting hints of lepton flavor universality violation in $B$-meson decays, present a very strong case for flavor-nonuniversal new physics beyond the Standard Model. We assert that a minimal $R$-parity violating supersymmetric scenario with relatively light third-generation sfermions (dubbed as 'RPV3') provides a natural, well-motivated framework for the simultaneous explanation of all flavor anomalies, while being consistent with a multitude of low-energy flavor constraints, as well as with limits from high-energy collider searches. We further propose complementary tests and distinct signatures of this scenario in the high-$p_T$ searches at current and future colliders. Specifically, we find that an sbottom in the mass range of 2-12 TeV accounts for $R_{D^{(*)}}$ and $R_{K^{(*)}}$ flavor anomalies and it only plays a minor role in the $(g-2)_\mu$ anomaly, whereas a sneutrino with mass between 0.7-1 TeV is the dominant player for $(g-2)_\mu$. In this context, we propose specific collider signatures of sbottom via its decays to $ \overline{ t}(t) \mu^+ \mu^-$, and of sneutrino pairs with their decays leading to a highly distinctive and spectacular four-muon final state, which can be used to completely probe the RPV3 parameter space of interest.
Explore related subjects
Keep this discovery
P. S. Bhupal Dev, Amarjit Soni, Fang Xu. 2021-06-29. Hints of Natural Supersymmetry in Flavor Anomalies?. https://doi.org/10.1103/physrevd.106.015014
Cite the original work for its findings. Save a collection to share your selection of sources.