6533b85efe1ef96bd12c056c
RESEARCH PRODUCT
Probing new physics in B¯0→D(*)τ−ν¯τ using the longitudinal, transverse, and normal polarization components of the tau lepton
Mikhail A. IvanovJürgen G. KörnerC. T. TranC. T. Transubject
PhysicsParticle physics010308 nuclear & particles physicsPhysics beyond the Standard ModelHigh Energy Physics::PhenomenologyPolarization observablesPolarization (waves)01 natural sciencesTransverse planesymbols.namesake0103 physical sciencessymbols010306 general physicsHamiltonian (quantum mechanics)Tensor operatorLeptondescription
We study the longitudinal, transverse, and normal polarization components of the tau lepton in the decays ${\overline{B}}^{0}\ensuremath{\rightarrow}{D}^{(*)}{\ensuremath{\tau}}^{\ensuremath{-}}{\overline{\ensuremath{\nu}}}_{\ensuremath{\tau}}$ and discuss their role in searching for new physics (NP) beyond the standard model (SM). Starting with a model-independent effective Hamiltonian including non-SM four-Fermi operators, we obtain experimental constraints on different NP scenarios and investigate their effects on the polarization observables. In the SM the longitudinal and transverse polarizations of the tau lepton differ substantially from the corresponding zero lepton mass values of ${P}_{L}=\ensuremath{-}1$ and ${P}_{T}=0$. In addition, ${P}_{L}$ and ${P}_{T}$ are very sensitive to NP effects. For the transverse polarization this holds true, in particular, for the effective tensor operator in the case of ${\overline{B}}^{0}\ensuremath{\rightarrow}{D}^{*}$ and for the scalar operator in the case of ${\overline{B}}^{0}\ensuremath{\rightarrow}D$. The $T$-odd normal polarization ${P}_{N}$, which is predicted to be negligibly small in the SM, can be very sizable assuming NP complex Wilson coefficients. We also discuss in some detail how the three polarization components of the tau lepton can be measured with the help of its subsequent leptonic and semihadronic decays.
year | journal | country | edition | language |
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2017-02-27 | Physical Review D |