Controlling the fine-tuning problem with singlet scalar dark matter
arXiv:1212.0394 · doi:10.1103/PhysRevD.87.055015
Abstract
Assuming that no other conventional new physics is found immediately at the LHC, we investigate how just the consistent solution of the scalar mass hierarchy problem points towards the minimal necessary field content. We show that to ameliorate the fine-tuning problem, one needs to introduce more scalar degrees of freedom. The simplest solution is one or more real singlets (with the possibility of combining two of them in a complex singlet), which may act as viable cold dark matter candidates, because the constraints on the scalar potential disfavor any mixing between the new scalar(s) with the SM doublet. Furthermore, the fine-tuning problem of the new scalars necessitates the introduction of vector-like fermions. Thus, singlet scalar(s) and vector fermions are minimal enhancements over the Standard Model to alleviate the fine-tuning problem. We also show that the model predicts Landau poles for all the scalar couplings, whose positions depend only on the number of such singlets. Thus, introduction of some new physics at that scale becomes inevitable. We also discuss how the model confronts the LHC constraints and the latest XENON100 data.
8 pages, 2 figures, added discussions on dark matter constraints and an extra figure, conclusions unchanged, version accepted in Phys. Rev. D
References in corpus (20)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- Dark Matter Results from 225 Live Days of XENON100 Data
- Gauge Singlet Scalars as Cold Dark Matter
- LHC Phenomenology of an Extended Standard Model with a Real Scalar Singlet
- The top quark and Higgs boson masses and the stability of the electroweak vacuum
- Indirect search for dark matter with micrOMEGAs2.4
- Complex Singlet Extension of the Standard Model
- Electroweak baryogenesis and dark matter from a singlet Higgs
- Novel Effects in Electroweak Breaking from a Hidden Sector
- Combined search for the Standard Model Higgs boson in pp collisions at sqrt(s) = 7 TeV with the ATLAS detector
- The real singlet scalar dark matter model
- Scalar Singlet Dark Matter
- Vacuum structure and stability of a singlet fermion dark matter model with a singlet scalar messenger
- 2:1 for Naturalness at the LHC?
- Unravelling an extended quark sector through multiple Higgs production?
- Electroweak Precision Constraints on Vector-like Fermions
- Singlet Neighbors of the Higgs Boson
- Singlet Assisted Vacuum Stability and the Higgs to Diphoton Rate
- Just so Higgs boson
Cited by in corpus (24)
- Multipartite Interacting Scalar Dark Matter in the light of updated LUX data
- Diphoton excess at 750 GeV: Singlet scalars confront triviality
- On the Veltman Condition, the Hierarchy Problem and High-Scale Supersymmetry
- Multi-Component Dark Matter in a Non-Abelian Dark Sector
- Probing the Higgs sector of Higgs Triplet Model at LHC
- Naturalness in Type II seesaw model and implications for physical scalars
- Potential of a singlet scalar enhanced Standard Model
- Two-Higgs doublet models confront the naturalness problem
- Effects of a Real Singlet Scalar on Veltman Condition
- Effects of Curvature-Higgs Coupling on Electroweak Fine-Tuning
- Dark Matter from Conformal Sectors
- New signals for singlet Higgs and vector-like quarks at the LHC
- Triplet-extended scalar sector and the naturalness problem
- A light scalar dark matter extension of the type-II two-Higgs-doublet model
- Low scale left-right-right-left symmetry
- Ameliorating the Higgs mass fine-tuning problem with multi-Higgs doublet models
- Singlet fermionic dark matter with Veltman conditions
- Two component dark matter with multi-Higgs portals
- The hierarchy problem and the vacuum stability in two-scalar dark matter model
- Veltman Criteria in Beyond Standard Model Effective Field Theory of Complex Scalar Triplet
- Hierarchy problem and dimension-six effective operators
- Reducing the Quadratic Divergence in the Higgs Mass Squared Without Top Partners
- Higgsed Stueckelberg Vector and Higgs Quadratic Divergence
- Fine-tuned Spin-3/2 and the Hierarchy Problem