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Low Energy Probes of PeV Scale Sfermions
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We derive bounds on squark and slepton masses in mini-split supersymmetry scenario using low energy experiments. In this setup gauginos are at the TeV scale, while sfermions are heavier by a loop factor. We cover the most sensitive low energy probes including electric dipole moments (EDMs), meson oscillations and charged lepton flavor violation (LFV) transitions. A leading log resummation of the large logs of gluino to sfermion mass ratio is performed. A sensitivity to PeV squark masses is obtained at present from kaon mixing measurements. A number of observables, including neutron EDMs, mu->e transitions and charmed meson mixing, will start probing sfermion masses in the 100 TeV-1000 TeV range with the projected improvements in the experimental sensitivities. We also discuss the implications of our results for a variety of models that address the flavor hierarchy of quarks and leptons. We find that EDM searches will be a robust probe of models in which fermion masses are generated radiatively, while LFV searches remain sensitive to simple-texture based flavor models.
Forward citations
Cited by 2 Pith papers
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Measurement of the branching fraction, polarization, and time-dependent $CP$ asymmetry in $B^0 \to \rho^+\rho^-$ decays and constraint on the CKM angle $\phi_2$
Belle II reports B(B0 -> rho+ rho-) = (2.89 +0.23/-0.22 +0.29/-0.27) x 10^-5, f_L = 0.921 +0.024/-0.025 +0.017/-0.015, S = -0.26 +/- 0.19 +/- 0.08, C = -0.02 +/- 0.12 +0.06/-0.05, and a derived phi2 = (92.6 +4.5/-4.7)...
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