87 research outputs found

    ρ\rho Polarization and `Model Independent' Extraction of Vub/Vcd|V_{ub}|/|V_{cd}| from DρνD\to\rho\ell\nu and BρνB\to\rho\ell\nu

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    We briefly discuss the predictions of the heavy quark effective theory for the semileptonic decays of a heavy pseudoscalar to a light one, or to a light vector meson. We point out that measurement of combinations of differential helicity decay rates at Cleo-c and the BB factories can provide a model independent means of extracting the ratio Vub/Vcd|V_{ub}|/|V_{cd}|. We briefly discuss the corrections to this prediction.Comment: 8 pages, LaTeX, 1 figur

    Transition Form Factors between Pseudoscalar and Vector Mesons in Light-Front Dynamics

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    We study the transition form factors between pseudoscalar and vector mesons using a covariant fermion field theory model in (3+1)(3+1) dimensions. Performing the light-front calculation in the q+=0q^+ =0 frame in parallel with the manifestly covariant calculation, we note that the suspected nonvanishing zero-mode contribution to the light-front current J+J^+ does not exist in our analysis of transition form factors. We also perform the light-front calculation in a purely longitudinal q+>0q^+ > 0 frame and confirm that the form factors obtained directly from the timelike region are identical to the ones obtained by the analytic continuation from the spacelike region. Our results for the BDlνlB \to D^* l \nu_l decay process satisfy the constraints on the heavy-to-heavy semileptonic decays imposed by the flavor independence in the heavy quark limit.Comment: 20 pages, 14 figure

    Charm and Bottom Semileptonic Decays

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    We review the present status of theoretical attempts to calculate the semileptonic charm and bottom decays and then present a calculation of these decays in the light--front frame at the kinematic point q2=0q^2=0. This allows us to evaluate the form factors at the same value of q2q^2, even though the allowed kinematic ranges for charm and bottom decays are very different. Also, at this kinematic point the decay is given in terms of only one form factor A0(0)A_{0}(0). For the ratio of the decay rates given by the E653 collaboration we show that the determination of the ratio of the Cabibbo--Kobayashi--Maskawa (CKM) matrix elements is consistent with that obtained from the unitarity constraint. At present, though, the unitarity method still has greater accuracy. Since comparisons of the semileptonic decays into ρ\rho and either electrons or muons will be available soon from the E791 Fermilab experiment, we also look at the massive muon case. We show that for a range of q2q^2 the SU(3)FSU(3)_F symmetry breaking is small even though the contributions of the various helicity amplitudes becomes more complicated. For BB decays, the decay BKˉB \rightarrow K^{*} \ell \bar{\ell} at q2=0q^2=0 involves an extra form factor coming from the photon contribution and so is not amenable to the same kind of analysis, leaving only the decay BKννˉB \rightarrow K^{*}\nu \bar{\nu} as a possibility. As the mass of the decaying particle increases we note that the SU(3)SU(3) symmetry becomes badly broken at q2=0q^2=0.Comment: Latex, 19 pages, two figures are attached, a minor change in the manuscript related to thi

    Bounds on Heavy-to-Heavy Mesonic Form Factors

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    We provide upper and lower bounds on the form factors for B -> D, D^* by utilizing inclusive heavy quark effective theory sum rules. These bounds are calculated to leading order in Lambda_QCD/m_Q and alpha_s. The O(alpha_s^2 beta_0) corrections to the bounds at zero recoil are also presented. We compare our bounds with some of the form factor models used in the literature. All the models we investigated failed to fall within the bounds for the combination of form factors (omega^2 - 1)/(4 omega)|omega h_{A2}+h_{A3}|^2.Comment: 27 pages, 10 figure

    Heavy to Light Meson Exclusive Semileptonic Decays in Effective Field Theory of Heavy Quark

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    We present a general study on exclusive semileptonic decays of heavy (B, D, B_s) to light (pi, rho, K, K^*) mesons in the framework of effective field theory of heavy quark. Transition matrix elements of these decays can be systematically characterized by a set of wave functions which are independent of the heavy quark mass except for the implicit scale dependence. Form factors for all these decays are calculated consistently within the effective theory framework using the light cone sum rule method at the leading order of 1/m_Q expansion. The branching ratios of these decays are evaluated, and the heavy and light flavor symmetry breaking effects are investigated. We also give comparison of our results and the predictions from other approaches, among which are the relations proposed recently in the framework of large energy effective theory.Comment: 18 pages, ReVtex, 5 figures, added references and comparison of results, and corrected signs in some formula

    Covariant Light-Front Approach for s-wave and p-wave Mesons: Its Application to Decay Constants and Form Factors

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    We study the decay constants and form factors of the ground-state s-wave and low-lying p-wave mesons within a covariant light-front approach. Numerical results of the form factors for transitions between a heavy pseudoscalar meson and an s-wave or p-wave meson and their momentum dependence are presented in detail. In particular, form factors for heavy-to-light and B to D** transitions, where D** denotes generically a p-wave charmed meson, are compared with other model calculations. The experimental measurements of the decays B^- to D** pi^- and B to D D**_s are employed to test the decay constants of D**_s and the B to D** transition form factors. The heavy quark limit behavior of the decay constants and form factors is examined and it is found that the requirement of heavy quark symmetry is satisfied. The universal Isgur-Wise (IW) functions, one for s-wave to s-wave and two for s-wave to p-wave transitions, are obtained. The values of IW functions at zero recoil and their slope parameters can be used to test the Bjorken and Uraltsev sum rules.Comment: 59 pages, 6 figures. Version to appear in Phys. Rev. D. Changes are: (i) D_s to phi transition form factors are discussed and compared with the recent FOCUS measurements and (ii) zero mode effects are clarifie

    Semileptonic B decays to excited charmed mesons

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    Exclusive semileptonic B decays into excited charmed mesons are investigated at order ΛQCD/mQ\Lambda_{QCD}/m_Q in the heavy quark effective theory. Differential decay rates for each helicity state of the four lightest excited DD mesons (D1D_1, D2D_2^*, D0D_0^*, and D1D_1^*) are examined. At zero recoil, ΛQCD/mQ\Lambda_{QCD}/m_Q corrections to the matrix elements of the weak currents can be written in terms of the leading Isgur-Wise functions for the corresponding transition and meson mass splittings. A model independent prediction is found for the slope parameter of the decay rate into helicity zero D1D_1 at zero recoil. The differential decay rates are predicted, including ΛQCD/mQ\Lambda_{QCD}/m_Q corrections with some model dependence away from zero recoil and including order αs\alpha_s corrections. Ratios of various exclusive branching ratios are computed. Matrix elements of the weak currents between BB mesons and other excited charmed mesons are discussed at zero recoil to order ΛQCD/mQ\Lambda_{QCD}/m_Q. These amplitudes vanish at leading order, and can be written at order ΛQCD/mQ\Lambda_{QCD}/m_Q in terms of local matrix elements. Applications to BB decay sum rules and factorization are presented.Comment: 39 pages revtex including 10 figures, uses epsf. Substantial improvements throughout the pape

    Semileptonic B decays into even parity charmed mesons

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    By using a constituent quark model we compute the form factors relevant to semileptonic transitions of B mesons into low-lying p-wave charmed mesons. We evaluate the q^2 dependence of these form factors and compare them with other model calculations. The Isgur-Wise functions tau(1/2) and tau(3/2) are also obtained in the heavy quark limit of our results.Comment: 11 pages, 2 figure

    Rare exclusive semileptonic b -> s transitions in the Standard Model

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    We study long-distance effects in rare exclusive semileptonic decays B -> (K, K*) (l+ l-, nu bar{nu}) and analyze dilepton spectra and asymmetries within the framework of the Standard Model. The form factors, describing the meson transition amplitudes of the effective Hamiltonian are calculated within the lattice-constrained dispersion quark model: the form factors are given by dispersion representations through the wave functions of the initial and final mesons, and these wave functions are chosen such that the B -> K* transition form factors agree with the lattice results at large q**2. We calculate branching ratios of semileptonic B -> K, K* transition modes and study the sensitivity of observables to the long-distance contributions. The shape of the forward-backward asymmetry and the longitudinal lepton polarization asymmetry are found to be independent of the long-distance effects and mainly determined by the values of the Wilson coefficients in the Standard Model.Comment: revtex, 17 pp., 5 figures with epsfig.st

    Kaon electroweak form factors in the light-front quark model

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    We investigate the form factors and decay rates for the semileptonic decays of the kaon(Kl3)K_{l3}) using the light-front quark model. The form factors f±(q2)f_{\pm}(q^{2}) are calculated in q+=0q^{+}=0 frame and analytically continued to the time-like region, q2>0q^{2}>0. Our numerical results for the physical observables, f/f+q2=ml2=0.38f_{-}/f_{+}|_{q^{2}=m^{2}_{l}}=-0.38, λ+=0.025\lambda_{+}=0.025(the slope of f+f_{+} at q2=ml2q^{2}=m^{2}_{l}), Γ(Ke30)=(7.30±0.12)×106s1\Gamma(K^{0}_{e3})=(7.30\pm 0.12)\times10^{6}s^{-1}, and Γ(Kμ30)=(4.57±0.07)×106s1\Gamma(K^{0}_{\mu3})=(4.57\pm0.07)\times10^{6}s^{-1} are quite comparable with the experimental data and other theoretical model calculations. The non-valence contributions from q+0q^{+}\neq 0 frame are also estimated.Comment: 12 pages, 6figures, modified Sec.III and added an appendix, version to appear in Phys. Rev.
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