Probing New Physics Scales from Higgs and Electroweak Observables at Higgs Factory
arXiv:1603.03385 · doi:10.1007/JHEP10(2016)007
Abstract
New physics beyond the standard model (SM) can be model-independently formulated via dimension-6 effective operators, whose coefficients (cutoffs) characterize the scales of new physics. We study the probe of new physics scales from the electroweak precision observables (EWPO) and the Higgs observables (HO) at the future Higgs factory (such as CEPC). To optimize constraints of new physics from all available observables, we establish a scheme-independent approach. With this formulation, we treat the SM electroweak parameters and the coefficients of dimension-6 operators on equal footing, which can be fitted simultaneously by the same function. As deviations from the SM are generally small, we can expand the new physics parameters up to linear order and perform an analytical fit to derive the potential reach of the new physics scales. We find that the HO from both Higgs produnction and decay rates can probe the new physics scales up to 10TeV (and to 44TeV for the case of gluon-involved operator ), and the new physics scales of Yukawa-type operators can be probed by the precision Higgs coupling measurements up to (13-25)TeV. Further including the EWPO can push the limit up to 35TeV. From this prospect, we demonstrate that the EWPO measured in the early phase of a Higgs factory can be as important as the Higgs observables. These indirect probes of new physics scales at the Higgs factory can mainly cover the energy range to be directly explored by the next generation hadron colliders of pp(50-100TeV), such as the SPPC and FCC-hh.
JHEP Final Version, 43 pages, 10 Tables, 6 Figs, using jheppub.sty format, only minor refinements
References in corpus (19)
- 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
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- The Standard Model Higgs boson as the inflaton
- Testing Electroweak Baryogenesis with Future Colliders
- Non-unitarity of the leptonic mixing matrix: Present bounds and future sensitivities
- Cosmological implications of the Higgs mass measurement
- The Probable Fate of the Standard Model
- Spacetime curvature and the Higgs stability during inflation
- Model-independent precision constraints on dimension-6 operators
- Electroweak Vacuum Stability in light of BICEP2
- Higgs Dynamics during Inflation
- Probable or Improbable Universe? Correlating Electroweak Vacuum Instability with the Scale of Inflation
- Inflationary cosmology and the standard model Higgs with a small Hubble induced mass
- Signs of Composite Higgs Pair Production at Next-to-Leading Order
- Exploration of the Tensor Structure of the Higgs Boson Coupling to Weak Bosons in Collisions
- Asymptotically Safe Higgs Inflation
- Higgs Inflation, Reheating and Gravitino Production in No-Scale Supersymmetric GUTs
- Probing Gravitational Dark Matter
Cited by in corpus (38)
- Precision Higgs Physics at CEPC
- Improved Formalism for Precision Higgs Coupling Fits
- A global view on the Higgs self-coupling at lepton colliders
- Probing the Scale of New Physics in the Coupling at Colliders
- Probing New Physics in Dimension-8 Neutral Gauge Couplings at Colliders
- Electroweak Higgs boson production in the standard model effective field theory beyond leading order in QCD
- Probing Electroweak Precision Physics via boosted Higgs-strahlung at the LHC
- Higgs Physics: It ain't over till it's over
- Towards the ultimate differential SMEFT analysis
- Constraining Photon Portal Dark Matter with Texono and Coherent Data
- Mixed electroweak-QCD corrections to at Higgs factory
- Constraining Higgs boson effective couplings at electron-positron colliders
- Charged lepton flavor violating Higgs decays at future colliders
- Constraining Gluonic Quartic Gauge Coupling Operators with
- Probing Neutral Triple Gauge Couplings at the LHC and Future Hadron Colliders
- The Case for Future Hadron Colliders From Decays
- Testing the electroweak phase transition in scalar extension models at lepton colliders
- Resolving the tensor structure of the Higgs coupling to -bosons via Higgs-strahlung
- Exploring Fermionic Dark Matter via Higgs Boson Precision Measurements at the Circular Electron Positron Collider
- CEPC Precision of Electroweak Oblique Parameters and Weakly Interacting Dark Matter: the Scalar Case
- Universal Imprints of a Pseudo-Nambu-Goldstone Higgs Boson
- Revisiting the Fermionic Dark Matter Absorption on Electron Target
- Precision SMEFT bounds from the VBF Higgs at high transverse momentum
- A fully differential SMEFT analysis of the golden channel using the method of moments
- Probing Neutral Triple Gauge Couplings with Production at Hadron Colliders
- Probing 6D Operators at Future Colliders
- Universal Relations in Composite Higgs Models
- An indirect probe of higgsino world at the CEPC
- Hadron Collider Probes of the Quartic Couplings of Gluons to the Photon and Boson
- Flavor Physics at the CEPC: a General Perspective
- Learning Physics at Future Colliders with Machine
- Non-standard Higgs couplings in single Higgs boson production at the LHC and future linear collider
- Testing Higgs Coupling Precision and New Physics Scales at Lepton Colliders
- Improving CP Measurement with THEIA and Muon Decay at Rest
- High energy lepton colliders as the ultimate Higgs microscopes
- Probing Neutral Triple Gauge Couplings at e- p colliders
- Riding the Seesaw: What Higgsstrahlung May Reveal about Massive Neutrinos
- Probing Neutral Triple Gauge Couplings via Production at Colliders with Machine Learning