357 research outputs found

    Hadronic B Decays to Charmed Baryons

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    We study exclusive B decays to final states containing a charmed baryon within the pole model framework. Since the strong coupling for ΛbBˉN\Lambda_b\bar B N is larger than that for ÎŁbBˉN\Sigma_b \bar BN, the two-body charmful decay B−→Σc0pˉB^-\to\Sigma_c^0\bar p has a rate larger than Bˉ0→Λc+pˉ\bar B^0\to\Lambda_c^+\bar p as the former proceeds via the Λb\Lambda_b pole while the latter via the ÎŁb\Sigma_b pole. By the same token, the three-body decay Bˉ0→Σc++pˉπ−\bar B^0\to\Sigma_c^{++}\bar p\pi^- receives less baryon-pole contribution than B−→Λc+pˉπ−B^-\to\Lambda_c^+\bar p\pi^-. However, because the important charmed-meson pole diagrams contribute constructively to the former and destructively to the latter, ÎŁc++pˉπ−\Sigma_c^{++}\bar p\pi^- has a rate slightly larger than Λc+pˉπ−\Lambda_c^+\bar p\pi^-. It is found that one quarter of the B−→Λc+pˉπ−B^-\to \Lambda_c^+\bar p\pi^- rate comes from the resonant contributions. We discuss the decays Bˉ0→Σc0pˉπ+\bar B^0\to\Sigma_c^0\bar p\pi^+ and B−→Σc0pˉπ0B^-\to\Sigma_c^0\bar p\pi^0 and stress that they are not color suppressed even though they can only proceed via an internal W emission.Comment: 25 pages, 6 figure

    Impact of Subleading Corrections on Hadronic B Decays

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    We study the subleading corrections originating from the 3-parton (q\bar q g) Fock states of final-state mesons in B decays. The corrections could give significant contributions to decays involving an \omega or \eta^{(\prime)} in the final states. Our results indicate the similarity of \omega K and \omega \pi^- rates, of order 5\times 10^{-6}, consistent with the recent measurements. We obtain a_2(B\to J/\psi K)\approx 0.27+0.05i, in good agreement with data. Without resorting to the unknown singlet annihilation effects, 3-parton Fock state contributions can enhance the branching ratios of K\eta' to the level above 50\times 10^{-6}.Comment: 5 pages, 5 figures, revtex4; some typos corrected, a new figure and a reference added, more explanations for the calculation provided, to appear in Phys. Rev.

    Détection et discrimination par émission acoustique des endommagements dans les composites. Comparaison expérience / modélisation

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    International audienceOn présente dans cette étude la discrimination des phénomÚnes de ruptures de fibre, de microfissuration intralaminaire, de macrofissuration intralaminaire ainsi que du microdélaminage au sein des composites stratifiés d'unidirectionnels orientés, dans le cadre d'une méthode de détection des endommagements basée sur la technique de l'Emission Acoustique. Ces résultats expérimentaux sont confrontés aux prévisions issues d'un modÚle de comportement de matériaux composites unidirectionnels, basés sur la physique des phénomÚnes à l'échelle des constituants

    Charmless Exclusive Baryonic B Decays

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    We present a systematical study of two-body and three-body charmless baryonic B decays. Branching ratios for two-body modes are in general very small, typically less than 10−610^{-6}, except that \B(B^-\to p \bar\Delta^{--})\sim 1\times 10^{-6}. In general, Bˉ→NΔˉ>Bˉ→NNˉ\bar B\to N\bar\Delta>\bar B\to N\bar N due to the large coupling constant for ÎŁb→BΔ\Sigma_b\to B\Delta. For three-body modes we focus on octet baryon final states. The leading three-dominated modes are Bˉ0→pnˉπ−(ρ−),npˉπ+(ρ+)\bar B^0\to p\bar n\pi^-(\rho^-), n\bar p\pi^+(\rho^+) with a branching ratio of order 3×10−63\times 10^{-6} for Bˉ0→pnˉπ−\bar B^0\to p\bar n\pi^- and 8×10−68\times 10^{-6} for Bˉ0→pnˉρ−\bar B^0\to p\bar n\rho^-. The penguin-dominated decays with strangeness in the meson, e.g., B−→ppˉK−(∗)B^-\to p\bar p K^{-(*)} and Bˉ0→pnˉK−(∗),nnˉKˉ0(∗)\bar B^0\to p\bar n K^{-(*)}, n\bar n \bar K^{0(*)}, have appreciable rates and the NNˉN\bar N mass spectrum peaks at low mass. The penguin-dominated modes containing a strange baryon, e.g., Bˉ0→Σ0pˉπ+,Σ−nˉπ+\bar B^0\to \Sigma^0\bar p\pi^+, \Sigma^-\bar n\pi^+, have branching ratios of order (1∌4)×10−6(1\sim 4)\times 10^{-6}. In contrast, the decay rate of Bˉ0→Λpˉπ+\bar B^0\to\Lambda\bar p\pi^+ is smaller. We explain why some of charmless three-body final states in which baryon-antibaryon pair production is accompanied by a meson have a larger rate than their two-body counterparts: either the pole diagrams for the former have an anti-triplet bottom baryon intermediate state, which has a large coupling to the BB meson and the nucleon, or they are dominated by the factorizable external WW-emission process.Comment: 46 pages and 3 figures, to appear in Phys. Rev. D. Major changes are: (i) Calculations of two-body baryonic B decays involving a Delta resonance are modified, and (ii) Penguin-dominated modes B-> Sigma+N(bar)+p are discusse

    Implications of Recent Measurements of Hadronic Charmless B Decays

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    Implications of recent CLEO measurements of hadronic charmless B decays are discussed. (i) Employing the Bauer-Stech-Wirbel (BSW) model for form factors as a benchmark, the B→π+π−B\to\pi^+\pi^- data indicate that the form factor F0Bπ(0)F_0^{B\pi}(0) is smaller than that predicted by the BSW model, whereas the data of B→ωπ,K∗ηB\to\omega\pi, K^*\eta imply that the form factors A0Bω(0),A0BK∗(0)A_0^{B\omega}(0), A_0^{BK^*}(0) are greater than the BSW model's values. (ii) The tree-dominated modes B→π+π−,ρ0π±,ωπ±B\to\pi^+\pi^-, \rho^0\pi^\pm, \omega\pi^\pm imply that the effective number of colors N_c(LL) for (V-A)(V-A) operators is preferred to be smaller, while the current limit on B→ϕKB\to\phi K shows that N_c(LR)>3. The data of B→Kηâ€ČB\to K\eta' and K∗ηK^*\eta clearly indicate that Nc(LR)≫Nc(LL)N_c(LR)\gg N_c(LL). (iii) In order to understand the observed suppression of π+π−\pi^+\pi^- and non-suppression of KπK\pi modes, both being governed by the form factor F0BπF_0^{B\pi}, the unitarity angle Îł\gamma is preferred to be greater than 90∘90^\circ. By contrast, the new measurement of B±→ρ0π±B^\pm\to\rho^0\pi^\pm no longer strongly favors cos⁥γ<0\cos\gamma<0. (iv) The observed pattern K^-\pi^+\sim \ov K^0\pi^-\sim {2\over 3}K^-\pi^0 is consistent with the theoretical expectation: The constructive interference between electroweak and QCD penguin diagrams in the K−π0K^-\pi^0 mode explains why {\cal B}(B^-\to K^-\pi^0)>{1\over 2}{\cal B}(\ov B^0\to K^-\pi^+). (v) The observation \nc(LL)<3<\nc(LR) and our preference for \nc(LL)\sim 2 and \nc(LR)\sim 6 are justified by a recent perturbative QCD calculation of hadronic rare B decays in the heavy quark limit.Comment: 21 pages; CLEO measurements of several charmless B decay modes are updated. Discussion of the unitarity angle gamma in the \rho\pi mode is revise

    Updated Analysis of a_1 and a_2 in Hadronic Two-body Decays of B Mesons

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    Using the recent experimental data of B→D(∗)(π,ρ)B\to D^{(*)}(\pi,\rho), B→D(∗)Ds(∗)B\to D^{(*)} D_s^{(*)}, B→J/ψK(∗)B\to J/\psi K^{(*)} and various model calculations on form factors, we re-analyze the effective coefficients a_1 and a_2 and their ratio. QCD and electroweak penguin corrections to a_1 from B→D(∗)Ds(∗)B\to D^{(*)}D_s^{(*)} and a_2 from B→J/ψK(∗)B\to J/\psi K^{(*)} are estimated. In addition to the model-dependent determination, the effective coefficient a_1 is also extracted in a model-independent way as the decay modes B→D(∗)hB\to D^{(*)}h are related by factorization to the measured semileptonic distribution of B→D(∗)ℓΜˉB\to D^{(*)}\ell \bar\nu at q2=mh2q^2=m_h^2. Moreover, this enables us to extract model-independent heavy-to-heavy form factors, for example, F0BD(mπ2)=0.66±0.06±0.05F_0^{BD}(m_\pi^2)=0.66\pm0.06\pm0.05 and A0BD∗(mπ2)=0.56±0.03±0.04A_0^{BD^*}(m_\pi^2)=0.56\pm0.03\pm0.04. The determination of the magnitude of a_2 from B→J/ψK(∗)B\to J/\psi K^{(*)} depends on the form factors F1BKF_1^{BK}, A1,2BK∗A_{1,2}^{BK^*} and VBK∗V^{BK^*} at q2=mJ/ψ2q^2=m^2_{J/\psi}. By requiring that a_2 be process insensitive (i.e., the value of a_2 extracted from J/ψKJ/\psi K and J/ψK∗J/\psi K^* states should be similar), as implied by the factorization hypothesis, we find that B→K(∗)B\to K^{(*)} form factors are severely constrained; they respect the relation F1BK(mJ/ψ2)≈1.9A1BK∗(mJ/ψ2)F_1^{BK}(m^2_{J/\psi})\approx 1.9 A_1^{BK^*}(m^2_{J/\psi}). Form factors A2BK∗A_2^{BK^*} and VBK∗V^{BK^*} at q2=mJ/ψ2q^2=m^2_{J/\psi} inferred from the measurements of the longitudinal polarization fraction and the P-wave component in B→J/ψK∗B\to J/\psi K^* are obtained. A stringent upper limit on a_2 is derived from the current bound on \ov B^0\to D^0\pi^0 and it is sensitive to final-state interactions.Comment: 33 pages, 2 figures. Typos in Tables I and IX are corrected. To appear in Phys. Rev.

    B -> J/psi K^* Decays in QCD Factorization

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    The hadronic decay B -> J K^* is analyzed within the framework of QCD factorization. The spin amplitudes A_0, A_\parallel and A_\perp in the transversity basis and their relative phases are studied using various different form-factor models for B-K^* transition. The effective parameters a_2^h for helicity h=0,+,- states receive different nonfactorizable contributions and hence they are helicity dependent, contrary to naive factorization where a_2^h are universal and polarization independent. QCD factorization breaks down even at the twist-2 level for transverse hard spectator interactions. Although a nontrivial strong phase for the A_\parallel amplitude can be achieved by adjusting the phase of an infrared divergent contribution, the present QCD factorization calculation cannot say anything definite about the phase phi_\parallel. Unlike B -> J/psi K decays, the longitudinal parameter a_2^0 for B -> J/psi K^* does not receive twist-3 corrections and is not large enough to account for the observed branching ratio and the fraction of longitudinal polarization. Possible enhancement mechanisms for a_2^0 are discussed.Comment: 21 pages, 1 figure, a table and a reference added, some typos correcte

    Final State Rescattering and Color-suppressed \bar B^0-> D^{(*)0} h^0 Decays

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    The color-suppressed \bar B^0-> D^{(*)0}\pi^0, D^{(*)0}\eta, D^0\omega decay modes have just been observed for the first time. The rates are all larger than expected, hinting at the presence of final state interactions. Considering \bar B^0-> D^{(*)0}\pi^0 mode alone, an elastic D^{(*)}\pi -> D^{(*)}\pi rescattering phase difference \delta \equiv \delta_{1/2} - \delta_{3/2} \sim 30^\circ would suffice, but the \bar B^0-> D^{(*)0}\eta, D^0\omega modes compel one to extend the elastic formalism to SU(3) symmetry. We find that a universal a_2/a_1=0.25 and two strong phase differences 20^\circ \sim \theta < \delta < \delta^\prime \sim 50^\circ can describe both DP and D^*P modes rather well; the large phase of order 50^\circ is needed to account for the strength of {\it both} the D^{(*)0}\pi^0 and D^{(*)0}\eta modes. For DV modes, the nonet symmetry reduces the number of physical phases to just one, giving better predictive power. Two solutions are found. We predict the rates of the \bar B^0-> D^{+}_s K^-, D^{*+}_s K^-, D^0\rho^0, D^+_s K^{*-} and D^0\phi modes, as well as \bar B^0-> D^{0}\bar K^0, D^{*0}\bar K^0, D^{0}\bar K^{*0} modes. The formalism may have implications for rates and CP asymmetries of charmless modes.Comment: REVTeX4, 18 pages, 5 figures, to appear in Phys. Rev.

    B→J/ψKB \to J/\psi K Decays in QCD Factorization

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    The hadronic decays B→J/ψK(K∗)B\to J/\psi K(K^*) are interesting because experimentally they are the only color-suppressed modes which have been measured, and theoretically they are calculable by QCD factorization even the emitted meson JψJ\psi is heavy. We analyze the decay B→JψKB\to J\psi K within the framework of QCD factorization in the heavy quark limit. We show explicitly the scale and Îł5\gamma_5-scheme independence of decay amplitudes and infrared safety of nonfactorizable corrections at twist-2 order. Leading-twist contributions from the light-cone distribution amplitudes (LCDAs) of the mesons are too small to accommodate the data; the nonfactorizable corrections to naive factorization are small and not significant. We study the twist-3 effects due to the kaon and find that the coefficient a2(JψK)a_2(J\psi K) is largely enhanced by the nonfactorizable spectator interactions arising from the twist-3 kaon LCDA ϕσK\phi^K_\sigma, which are formally power-suppressed but chirally, logarithmically and kinematically enhanced. Therefore, factorization breaks down at twist-3 order. Higher-twist effects of JψJ\psi are briefly discussed. Our result also resolves the long-standing sign ambiguity of a2(JψK)a_2(J\psi K), which turns out to be positive for its real part.Comment: 18 pages, 2 figures. Typos in Eqs.(3.4), (3.5), and (3.6) are correcte

    A thermostable leucine aminopeptidase from Bacillus kaustophilus CCRC 11223

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    Two degenerate primers established from the consensus sequences of bacterial leucine aminopeptidases (LAP) were used to amplify a 360-bp gene fragment from the chromosomal DNA of thermophilic Bacillus kaustophilus CCRC 11223 and the amplified fragment was successfully used as a probe to clone a leucine aminopeptidase (lap) gene from a genomic library of the strain. The gene consists of an open reading frame (ORF) of 1,494 bp and encodes a protein of 497 amino acid residues with a calculated molecular mass of 53.7 kDa. The complete amino acid sequence of the cloned enzyme showed greater than 30% identity with prokaryotic and eukaryotic LAPs. Phylogenetic analysis showed that B. kaustophilus LAP is closely related to the enzyme from Bacillus subtilis and is grouped with the M17 family. His(6)-tagged LAP was generated in Escherichia coli by cloning the coding region into pQE-30 and the recombinant enzyme was purified by nickel-chelate chromatography. The pH and temperature optima for the purified enzyme were 8 and 65degreesC, respectively, and 50% of its activity remained after incubation at 60degreesC for 32 min. The enzyme preferentially hydrolyzed L-leucine-p-nitroanilide (L-Leu-p-NA) followed by Cys derivative
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