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Observable Effects of General New Scalar Particles

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arxiv 1412.8480 v2 pith:UML4OTM6 submitted 2014-12-29 hep-ph hep-th

Observable Effects of General New Scalar Particles

classification hep-ph hep-th
keywords particlesscalareffectivelagrangianmodelstandardarbitrarycouplings
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We classify all possible new scalar particles that can have renormalizable linear couplings to Standard Model fields and therefore be singly produced at colliders. We show that this classification exhausts the list of heavy scalar particles that contribute at the tree level to the Standard Model effective Lagrangian to dimension six. We compute this effective Lagrangian for a general scenario with an arbitrary number of new scalar particles and obtain flavor-preserving constraints on their couplings and masses. This completes the tree-level matching of the coefficients of dimension five and six operators in the effective Lagrangian to arbitrary extensions of the Standard Model.

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Cited by 2 Pith papers

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    Complete one-loop SMEFT dim-6 dictionary for arbitrary heavy fermion and scalar UV completions, added to the SOLD package with example application to B to K nu nu anomaly.

  2. The effect of the two-loop SMEFT RGEs at future colliders

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    Two-loop SMEFT RGEs induce non-negligible effects on the evolution of Wilson coefficients, leading to percent-level shifts in projected sensitivities for four-quark, top Yukawa, and Higgs-gluon operators in collider fits.