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The More Minimal Supersymmetric Standard Model
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abstract
Effective Supersymmetry is presented as a theory of physics above the electroweak scale which has significant theoretical advantages over both the standard model and the Minimal Supersymmetric Standard Model (MSSM). The theory is supersymmetric at short distances but differs significantly from the MSSM. Flavor symmetry violation is intimately related to supersymmetry breaking. There is a new physics scale $\mt\sim$~5--20 TeV which sets the mass of the first two sparticle families. Supersymmetric sources of CP violation and flavor changing neutral currents for the first two families are suppressed. Effective Supersymmetry can be implemented with automatic suppression of baryon and lepton number violation and a dynamically generated $\mu$ term, while maintaining naturalness in the Higgs sector. There are implications for new particle searches, flavor and CP violation experiments, as well as for the construction of theories of flavor and dynamical supersymmetry breaking.
Forward citations
Cited by 5 Pith papers
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Unveiling the Vanishing Higgsino-Nucleon Scattering in the MSSM at Next-to-Leading Order
Near the stop-top kinematic threshold, next-to-leading-order corrections cancel the leading Higgsino-nucleon scattering amplitude, pushing the spin-independent cross section below the neutrino floor in parts of the MS...
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Can blind spots save neutralino dark matter in natural supersymmetry models?
Direct-detection blind spots fail to rescue stable light higgsino dark matter in electroweak-natural NUHM2/NUHM3 models once LZ, LHC soft-dilepton, and Higgs-mass constraints are imposed.
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Living dangerously with decoupled first/second generation scalars: SUSY prospects at the LHC
In the NUHM3 SUSY model, a landscape draw to heavy first and second generation scalars forces the surviving natural parameter space to have light top squarks but heavy gluinos, with low-mass regions excluded by charge...
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Unravelling theoretical challenges in understanding $B_c$ meson decay
The paper presents new RIQ-model predictions for B_c decay ratios (R_D/D*, R_eta_c/J/psi, and tau/mu leptonic ratios) with no derivation or error bars.
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In Pursuit of New Paradigms: TASI 2024
A review of theoretical paradigms, from pNGB Higgs to SUSY, that attempt to explain the smallness of the Higgs mass.
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