Higgs-Boson Decay to Four Fermions Including a Single Top Quark Below t t Threshold
Heath Pois, Thomas J. Weiler, Tzu Chiang Yuan
Abstract
The rare decay modes Higgs → four light fermions, and Higgs → single top-quark + three light fermions for mt<MH<2mt, are presented, and phenomenologically interpreted. The angular correlation between fermion planes is presented as a test of the spin and intrinsic parity of the Higgs particle. In Higgs decay to single top, two tree-level graphs contribute in the standard model (SM); one couples the Higgs to W+W-( gMW), and one to t t( gtop\;yukawa=mt/246). The large Yukawa coupling for mt>100 makes the second amplitude competitive or dominant for most MH,mt values. Thus the Higgs decay rate to single top directly probes the SM universal mechanism generating both gauge boson and fermion masses, and offers a means to infer the Higgs-t t Yukawa coupling when H→ t t is kinematically disallowed. We find that the modes pp→ Xt t(H→ t b W(*)) at the SSC, and e+ e-→ Z\,or\,νν + (H→ t b W(*)) at future high energy, high luminosity colliders, may be measureable if 2mt is not too far above MH. We classify non-standard Higgses as gaugeo-phobic, fermio-phobic or fermio-philic, and discuss the Higgs→ single top rates for these classes.
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