The Full Angular Distribution and CP violating Triple Products
arXiv:1302.7031 · doi:10.1007/JHEP09(2013)059
Abstract
We perform a comprehensive study of the impact of new-physics operators with different Lorentz structures on $\BDstarellnu$ decays, ) involving the transition. We present the full three angle and angular distribution with new physics operators with complex couplings. Various observables are constructed from the angular distribution with special focus on the CP violating triple product asymmetries which vanish in the Standard Model without any hadronic complications. Two of the three triple products are only sensitive to vector/axial vector new physics operators. %and do not depend on pseudoscalar new physics. Hence, the measurements of non-zero triple-product asymmetries will be a clear sign of new physics and a strong signal for vector/axial vector new physics operators. Even though we focus on final state, one can use the triple-products to search for new physics with and in the final state.
31 pages, 35 figures, references added, discussion added. arXiv admin note: text overlap with arXiv:1206.3760. Journal of High Energy Physics, Volume 2013, Issue 9
References in corpus (11)
- On the B to D* tau nu Sensitivity to New Physics
- Implications of lepton flavor universality violations in B decays
- Evidence for B- -> tau- nu_tau-bar with a Hadronic Tagging Method Using the Full Data Sample of Belle
- On the anomalous enhancement observed in decays
- Measurement of the form factors of the decay B0 -> D*- ell+ nu and determination of the CKM matrix element |Vcb|
- Top quark forward-backward asymmetry at Tevatron and its implications at the LHC
- Semileptonic decays in the perturbative QCD factorization approach
- Mixing and New Physics in hadronic transitions
- B decay anomalies in an effective theory
- Suppressed FCNC in New Physics with Shared Flavor Symmetry
- B -> D(*) Tau Nu decays in two-Higgs-doublet models
Cited by in corpus (70)
- Testing leptoquark models in
- Precision Tau Physics
- Simultaneous Explanation of the and Puzzles
- The lifetime of the meson and the anomalies in
- Simultaneous Explanation of the and Puzzles: a Model Analysis
- Revisiting the one leptoquark solution to the anomalies and its phenomenological implications
- New Physics effect on in relation to the anomaly
- Global fit to transitions
- Impact of polarization observables and on new physics explanations of the anomaly
- Phenomenology of using lattice QCD calculations
- Addendum to "Impact of polarization observables and on new physics explanations of the anomaly"
- Explaining the and anomalies with vector leptoquarks
- New physics solutions for and
- Decay in the Standard Model and with New Physics
- Analyzing new physics in the decays with form factors obtained from the covariant quark model
- A closer look at the and anomalies
- 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
- Explaining the data with scalar interactions
- Probing new physics in using the longitudinal, transverse, and normal polarization components of the tau lepton
- Anatomy of anomalies
- \large\bf semileptonic decays within Standard model and beyond
- Effective theory approach to new physics in and leptonic and semileptonic decays
- Lepton-flavour non-universality of angular distributions in and beyond the Standard Model
- Scalar doublet models confront and anomalies
- The role of right-handed neutrinos in anomalies
- New physics in the kinematic distributions of
- decay in scalar and vector leptoquark scenarios
- Asymmetry Observables and the Origin of Anomalies
- Investigation of Effects of New Physics in Decay
- Probing the R-parity violating supersymmetric effects in the exclusive b\to c\ell^-\barν_\ell decays
- Global fit to anomalies as of Spring 2024
- Model independent analysis of leptonic and semileptonic decays
- R-parity violating solutions to the anomaly and their GUT-scale unifications
- and leptonic decays as probes of solutions to the puzzle
- Maximizing the Impact of New Physics in Anomalies
- CP violation in using multi-pion tau decays
- Signature of Lepton flavor universality violation in semileptonic decays
- Model-independent method for measuring the angular coefficients of decays
- CP Violation in
- A Measurable Angular Distribution for Decays
- Symmetries in angular observables
- New physics in inclusive decay in light of measurements
- The role of right-handed neutrinos in from visible final-state kinematics
- A Complete Framework for Tau Polarimetry in Decays
- Probing effects of new physics in decays
- New physics in inclusive semileptonic decays including nonperturbative corrections
- New physics and the tau polarization vector in decays
- Impact of vector new physics couplings on and decays
- Signatures of complex new physics in transitions
- decays in effective field theory with massive right-handed neutrinos
- Detailed Study of the Decay Lambda_b --> Lambda_c tau {\bar ν}_τ
- B-Meson Decays into Final States with a tau Lepton
- , and semileptonic decays including new physics
- Progress on semi-leptonic decays
- Measuring CP violation in using excited charm mesons
- New physics effects on decays
- Implications for the anomaly in using a new Monte Carlo Event Generator
- Predictions of decay observables in the standard model
- Analysis of anomalies using weak effective Hamiltonian with complex couplings
- Corrections to and in the BLMSSM
- Angular analysis of decay and new physics
- Visible energy and angular distributions of the charged particle from the decay in reactions
- Explaining B decays anomalies in SUSY models
- Addressing the puzzle through New Physics four-fermion operators and their impact on decay
- Semi-leptonic Decay of Lambda-b in the Standard Model and with New Physics
- Diagnosing New Physics with LUV and LFV B Decays