New SFV two-Higgs-doublet models allow electroweak-scale Higgs bosons with order-0.1 light-quark couplings, consistent with all current flavor and collider bounds.
Improved description of charged Higgs boson production at hadron colliders
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abstract
We present a new method for matching the two twin-processes gb->H+/-t and gg->H+/-tb in Monte Carlo event generators. The matching is done by defining a double-counting term, which is used to generate events that are subtracted from the sum of these two twin-processes. In this way we get a smooth transition between the collinear region of phase space, which is best described by gb->H+/-t, and the hard region, which requires the use of the gg->H+/-tb process. The resulting differential distributions show large differences compared to both the gb-> H+/-t and gg->H+/-tb processes illustrating the necessity to use matching when tagging the accompanying b-jet.
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Higgs bosons with large couplings to light quarks
New SFV two-Higgs-doublet models allow electroweak-scale Higgs bosons with order-0.1 light-quark couplings, consistent with all current flavor and collider bounds.