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
The supersymmetric flavor, CP and Polonyi problems are hints that the fundamental scale of the soft ...
Using effective-Lagrangian techniques we perform a systematic survey of the lowest-dimension effecti...
We show how to systematically analyze what may be inferred should a new scalar particle be discovere...
We classify all possible new scalar particles that can have renormalizable linear couplings to Stand...
We classify all possible new scalar particles that can have renormalizable linear couplings to Stand...
We discuss the representations that new scalar degrees of freedom (beyond those in the minimal stand...
The discovery of a 125 GeV Higgs boson is one of the greatest successes of the Standard Model of par...
In this paper we investigate a natural extension of the Standard Model that involves varying couplin...
We study several problems related to the construction and the use of effective Lagrangians by consid...
This thesis investigates minimal extensions to the standard model (SM) scalar sector. These are sepa...
In this paper, we work with 16 different single scalar particle extensions of the Standard Model. We...
We make a study of the indirect effects of new physics on the phenomenology of the “Higgs-like ” par...
We give a brief overview of beyond the Standard Model (BSM) theories with an extended scalar sector ...
We give a brief overview of beyond the Standard Model (BSM) theories with an extended scalar sector ...
Effective Lagrangians can be used to parametrize the effects of physics beyond the standard model. A...
The supersymmetric flavor, CP and Polonyi problems are hints that the fundamental scale of the soft ...
Using effective-Lagrangian techniques we perform a systematic survey of the lowest-dimension effecti...
We show how to systematically analyze what may be inferred should a new scalar particle be discovere...
We classify all possible new scalar particles that can have renormalizable linear couplings to Stand...
We classify all possible new scalar particles that can have renormalizable linear couplings to Stand...
We discuss the representations that new scalar degrees of freedom (beyond those in the minimal stand...
The discovery of a 125 GeV Higgs boson is one of the greatest successes of the Standard Model of par...
In this paper we investigate a natural extension of the Standard Model that involves varying couplin...
We study several problems related to the construction and the use of effective Lagrangians by consid...
This thesis investigates minimal extensions to the standard model (SM) scalar sector. These are sepa...
In this paper, we work with 16 different single scalar particle extensions of the Standard Model. We...
We make a study of the indirect effects of new physics on the phenomenology of the “Higgs-like ” par...
We give a brief overview of beyond the Standard Model (BSM) theories with an extended scalar sector ...
We give a brief overview of beyond the Standard Model (BSM) theories with an extended scalar sector ...
Effective Lagrangians can be used to parametrize the effects of physics beyond the standard model. A...
The supersymmetric flavor, CP and Polonyi problems are hints that the fundamental scale of the soft ...
Using effective-Lagrangian techniques we perform a systematic survey of the lowest-dimension effecti...
We show how to systematically analyze what may be inferred should a new scalar particle be discovere...