Constraints on the charged scalar effects using the forward-backward asymmetry on
arXiv:1205.4908 · doi:10.1103/PhysRevD.87.054002
Abstract
The decay modes are sensitive to charged scalar effects, such as the charged Higgs effects. In this paper we suggest a method to determine their effects by using the ratio of branching fractions and forward-backward asymmetries. In particular, forward-backward asymmetries on , , and play an important role, which discriminate the Standard Model from other New Physics scenarios.
8 pages, 7 figures. The Results of forward-backward asymmetry on B->D(*)pi nu nu, B->D(*)rho nu nu, and B->D(*)a1 nu nu added
References in corpus (13)
- Evidence for an excess of B -> D(*) Tau Nu decays
- On the B to D* tau nu Sensitivity to New Physics
- Updated Values of Running Quark and Lepton Masses
- Implications of lepton flavor universality violations in B decays
- Explaining B->Dτν, B->D*τνand B->τνin a 2HDM of type III
- Sensitivity to charged scalars in and decays
- Search for charged Higgs bosons decaying via H+ -> tau nu in top quark pair events using pp collision data at sqrt(s) = 7 TeV with the ATLAS detector
- Diagnosing New Physics in decays in the light of the recent BaBar result
- Charged-Higgs effects in a new B -> D tau nu differential decay distribution
- B decays with -leptons in non-universal left-right models
- Measurement of the form factors of the decay B0 -> D*- ell+ nu and determination of the CKM matrix element |Vcb|
- B decay anomalies in an effective theory
- Measurement of B -> D^(*) tau nu using full reconstruction tags
Cited by in corpus (49)
- Flavor-phenomenology of two-Higgs-doublet models with generic Yukawa structure
- Testing leptoquark models in
- Simultaneous Explanation of the and Puzzles
- Flavor models for
- The lifetime of the meson and the anomalies in
- A perturbed lepton-specific two-Higgs-doublet model facing experimental hints for physics beyond the Standard Model
- Diagnosing New Physics in decays in the light of the recent BaBar result
- Impact of polarization observables and on new physics explanations of the anomaly
- Addendum to "Impact of polarization observables and on new physics explanations of the anomaly"
- Phenomenology of semileptonic B-meson decays with form factors from lattice QCD
- Lepton universality violation and right-handed currents in
- Decay in the Standard Model and with New Physics
- New Physics in the Visible Final States of
- The Azimuthal Angular Distribution with Tensor Operators
- D* polarization as a probe to discriminate new physics in B --> D* tau nubar
- Probing New Physics with distributions in
- Tau properties in from visible final-state kinematics
- Consequences of R-Parity violating interactions for anomalies in and
- LHC constraints and prospects for scalar leptoquark explaining the anomaly
- Two-body non-leptonic heavy-to-heavy decays at NNLO in QCD factorization
- decays within standard model and beyond
- Effective theory approach to new physics in and leptonic and semileptonic decays
- Looking for possible new physics in in light of recent data
- Asymmetry Observables and the Origin of Anomalies
- Charged current anomalies in a general boson scenario
- Probing the R-parity violating supersymmetric effects in the exclusive b\to c\ell^-\barν_\ell decays
- Exploring top quark FCNC within 2HDM type III in association with flavor physics
- Beyond with the general 2HDM-III for
- Global fit to anomalies as of Spring 2024
- R-parity violating solutions to the anomaly and their GUT-scale unifications
- Maximizing the Impact of New Physics in Anomalies
- CP violation in using multi-pion tau decays
- CP Violation in
- Model-independent method for measuring the angular coefficients of decays
- A Measurable Angular Distribution for Decays
- The decays in the pQCD approach with the Lattice QCD input
- A Complete Framework for Tau Polarimetry in Decays
- Study of semileptonic decays
- Flavour issues in warped custodial models: anomalies and rare decays
- decays in supersymmetry with -parity violation
- The fate of vector leptoquarks: the impact of future flavour data
- TAU2012 Summary
- New physics in the angular distribution of decay
- Challenges for New Physics in the Flavour Sector
- Corrections to and in the BLMSSM
- Tauonic decays and Higgs mediated flavour violation
- Charged Higgs: Interpretation of -physics results
- The effects of polarization on the observables in the decay
- Semi-leptonic Decay of Lambda-b in the Standard Model and with New Physics