Javascript must be enabled to continue!
Dimension-8 SMEFT analysis of minimal scalar field extensions of the Standard Model
View through CrossRef
A
bstract
We analyze the constraints obtainable from present data using the Standard Model Effective Field Theory (SMEFT) on extensions of the Standard Model with additional electroweak singlet or triplet scalar fields. We compare results obtained using only contributions that are linear in dimension-6 operator coefficients with those obtained including terms quadratic in these coefficients as well as contributions that are linear in dimension-8 operator coefficients. We also implement theoretical constraints arising from the stability of the electroweak vacuum and perturbative unitarity. Analyzing the models at the dimension-8 level constrains scalar couplings that are not bounded at the dimension-6 level. The strongest experimental constraints on the singlet model are provided by Higgs coupling measurements, whereas electroweak precision observables provide the strongest constraints on the triplet model. In the singlet model the present di-Higgs constraints already play a significant role. We find that the current constraints on model parameters are already competitive with those anticipated from future di- and tri-Higgs measurements. We compare our results with calculations in the full model, exhibiting the improvements when higher-order SMEFT terms are included. We also identify regions in parameter space where the SMEFT approximation appears to break down. We find that the combination of current constraints with the theoretical bounds still admits regions where the SMEFT approach is not valid, particularly for lower scalar boson masses.
Springer Science and Business Media LLC
Title: Dimension-8 SMEFT analysis of minimal scalar field extensions of the Standard Model
Description:
A
bstract
We analyze the constraints obtainable from present data using the Standard Model Effective Field Theory (SMEFT) on extensions of the Standard Model with additional electroweak singlet or triplet scalar fields.
We compare results obtained using only contributions that are linear in dimension-6 operator coefficients with those obtained including terms quadratic in these coefficients as well as contributions that are linear in dimension-8 operator coefficients.
We also implement theoretical constraints arising from the stability of the electroweak vacuum and perturbative unitarity.
Analyzing the models at the dimension-8 level constrains scalar couplings that are not bounded at the dimension-6 level.
The strongest experimental constraints on the singlet model are provided by Higgs coupling measurements, whereas electroweak precision observables provide the strongest constraints on the triplet model.
In the singlet model the present di-Higgs constraints already play a significant role.
We find that the current constraints on model parameters are already competitive with those anticipated from future di- and tri-Higgs measurements.
We compare our results with calculations in the full model, exhibiting the improvements when higher-order SMEFT terms are included.
We also identify regions in parameter space where the SMEFT approximation appears to break down.
We find that the combination of current constraints with the theoretical bounds still admits regions where the SMEFT approach is not valid, particularly for lower scalar boson masses.
Related Results
Fingerprinting New Physics with Effective Field Theories
Fingerprinting New Physics with Effective Field Theories
Given the absence of direct evidence for new resonances beyond the Standard Model (BSM) at the Large Hadron Collider (LHC) so far, a complementary strategy to search for new physic...
Top, Higgs, diboson and electroweak fit to the Standard Model effective field theory
Top, Higgs, diboson and electroweak fit to the Standard Model effective field theory
Abstract
The search for effective field theory deformations of the Standard Model (SM) is a major goal of particle physics that can benefit from a global appro...
Probing the flavour-blind SMEFT: EFT validity and the interplay of energy scales
Probing the flavour-blind SMEFT: EFT validity and the interplay of energy scales
Abstract
The Standard Model Effective Field Theory (SMEFT) offers a systematic approach to study potential deviations from the Standard Model (SM) through high...
Relevance of one-loop SMEFT matching in the 2HDM
Relevance of one-loop SMEFT matching in the 2HDM
The two-Higgs doublet model (2HDM) is a well understood alternative to the Standard Model of particle physics. If the new particles included in the 2HDM are at an energy scale much...
Electroweak corrections in the SMEFT: four-fermion operators at high energies
Electroweak corrections in the SMEFT: four-fermion operators at high energies
A
bstract
In the Standard Model (SM), electroweak (EW) corrections become significant at high energies...
Modern topics in black hole physics and cosmology
Modern topics in black hole physics and cosmology
Motivated by the new opportunities that gravitational wave detections of-fer in both cosmology and astrophysics, in this thesis we study potentially detectable physical phenomena r...
Study on the Mass Determination of Scalar Field in the Brans-Dike Theory of Gravity
Study on the Mass Determination of Scalar Field in the Brans-Dike Theory of Gravity
The original Brans-Dicke scalar-tensor theory was a scalar massless theory that does not have the self-acting potential of the scalar field. However, further studies are developing...
The automation of SMEFT-assisted constraints on UV-complete models
The automation of SMEFT-assisted constraints on UV-complete models
A
bstract
The ongoing Effective Field Theory (EFT) program at the LHC and elsewhere is motivated by st...

