5,160 research outputs found

    Hidden charm pentaquark and Λ(1405)\Lambda(1405) in the Λb0→ηcK−p(πΣ)\Lambda^0_b \to \eta_c K^- p (\pi \Sigma) reaction

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    We have performed a study of the Λb0→ηcK−p\Lambda^0_b \to \eta_c K^- p and Λb0→ηcπΣ\Lambda^0_b \to \eta_c \pi \Sigma reactions based on the dominant Cabibbo favored weak decay mechanism. We show that the K−pK^- p produced only couples to Λ∗\Lambda^* states, not Σ∗\Sigma^* and that the πΣ\pi \Sigma state is only generated from final state interaction of KˉN\bar{K}N and ηΛ\eta \Lambda channels which are produced in a primary stage. This guarantees that the πΣ\pi \Sigma state is generated in isospin I=0I=0 and we see that the invariant mass produces a clean signal for the Λ(1405)\Lambda(1405) of higher mass at 14201420 MeV. We also study the ηcp\eta_c p final state interaction, which is driven by the excitation of a hidden charm resonance predicted before. We relate the strength of the different invariant mass distributions and find similar strengths that should be clearly visible in an ongoing LHCb experiment. In particular we predict that a clean peak should be seen for a hidden charm resonance that couples to the ηcp\eta_c p channel in the invariant ηcp\eta_c p mass distribution.Comment: 8 pages, 7 figure

    Bˉ0\bar B^0, B−B^- and Bˉs0\bar B^0_s decays into J/ψJ/\psi and KKˉK \bar K or πη\pi \eta

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    We study the Bˉs0→J/ψK+K−\bar B^0_s \to J/\psi K^+ K^-, Bˉ0→J/ψK+K−\bar B^0 \to J/\psi K^+ K^-, B−→J/ψK0K−B^- \to J/\psi K^0 K^-, Bˉ0→J/ψπ0η\bar B^0 \to J/\psi \pi^0 \eta and B−→J/ψπ−ηB^- \to J/\psi \pi^- \eta decays and compare their mass distributions with those obtained for the Bˉs0→J/ψπ+π−\bar B^0_s \to J/\psi \pi^+ \pi^- and Bˉ0→J/ψπ+π−\bar B^0 \to J/\psi \pi^+ \pi^-. The approach followed consist in a factorization of the weak part and the hadronization part into a factor which is common to all the processes. Then what makes the reactions different are some trivial Cabibbo-Kobayashi-Maskawa matrix elements and the weight by which the different pairs of mesons appear in a primary step plus their final state interaction. These elements are part of the theory and thus, up to a global normalization factor, all the invariant mass distributions are predicted with no free parameters. Comparison is made with the limited experimental information available. Further comparison of these results with coming LHCb measurements will be very valuable to make progress in our understanding of the meson-meson interaction and the nature of the low lying scalar meson resonances, f0(500),f0(980)f_0(500), f_0(980) and a0(980)a_0(980).Comment: 12 pages, 6 figures; v2: discussion added, references added, final version published in EPJ

    M5-branes and Wilson Surfaces

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    We investigate the M5-brane description of the Wilson surface operators in six-dimensional (2,0) superconformal field theory from AdS/CFT correspondence. We consider the Wilson surface operators in high-dimensional representation, whose description could be M5-brane string soliton solutions in AdS7×S4AdS_7\times S^4 background. We construct such string soliton solutions from the covariant M5-brane equations of motion and discuss their properties. The supersymmetry analysis shows that these solutions are half-BPS. We also discuss the subtle issue on the boundary terms.Comment: 30 pages, Latex; little revision;Typos corrected, references added, JHEP published versio
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