844 research outputs found

    Strangeness S=-3 and -4 baryon-baryon interactions in chiral EFT

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    I report on recent progress in the description of baryon-baryon systems within chiral effective field theory. In particular, I discuss results for the strangeness S=-3 to -4 baryon-baryon systems, obtained to leading order.Comment: 4 pages, 2 figures, Contribution to the proceedings of the 12th International Conference on Meson-Nucleon Physics and the Structure of the Nucleon (MENU2010), May 31-June 4, 2010, College of William and Mary, Williamsburg, Virgini

    Production of charmed baryons in pˉp\bar p p collisions close to their thresholds

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    Cross sections for the charm-production reactions pˉpΛˉcΣc+\bar p p \to \bar \Lambda_c^- \Sigma_c^+, ΣˉcΣc\bar \Sigma_c\Sigma_c, ΞˉcΞc\bar \Xi_c\Xi_c, and ΞˉcΞc\bar \Xi_c'\Xi_c' are presented, for energies near their respective thresholds. The results are based on a calculation performed in the meson-exchange framework in close analogy to earlier studies of the J\"ulich group on the strangeness-production reactions pˉpΛˉΣ\bar p p \to \bar \Lambda\Sigma, ΣˉΣ\bar \Sigma\Sigma, ΞˉΞ\bar \Xi\Xi by connecting the two sectors via SU(4) flavor symmetry. The cross sections are found to be in the order of 0.110.1 - 1 μb\mu b at energies of 100100 MeV above the respective thresholds, for all considered channels. Complementary to meson-exchange, where the charmed baryons are produced by the exchange of DD and DD^* mesons, a charm-production potential derived in a quark model is employed for assessing uncertainties. The cross sections predicted within that picture turned out to be significantly smaller.Comment: 17 pages, 7 figure

    The ψ\psi(3770) resonance and its production in pˉpDDˉ\bar pp \to D \bar D

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    The production of a DDˉD\bar D meson-pair in antiproton-proton (pˉp\bar p p) annihilation close to the production threshold is investigated, with special emphasis on the role played by the ψ\psi(3770) resonance. The study is performed in a meson-baryon model where the elementary charm production process is described by baryon exchange. Effects of the interactions in the initial and final states are taken into account rigorously, where the latter involves also those due to the ψ\psi(3770). The predictions for the DDˉD\bar D production cross section are in the range of 30 -- 250 nb, the contribution from the ψ\psi(3770) resonance itself amounts to roughly 20 -- 80 nb.Comment: 6 pages, 6 figure

    Production of charmed pseudoscalar mesons in antiproton-proton annihilation

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    We study the production of charmed mesons (D, D_s) in antiproton-proton annihilation close to the reaction thresholds. The elementary charm production process is described by baryon exchange and in the constituent quark model, respectively. Effects of the interactions in the initial and final states are taken into account rigorously. The calculations are performed in close analogy to our earlier study on pbarp to KbarK by connecting the processes via SU(4) flavor symmetry. Our predictions for the DDbar production cross section are in the order of 10^{-2} -- 10^{-1} mu b. They turned out to be comparable to those obtained in other studies. The cross section for a D_sD_s pair is found to be of the same order of magnitude despite the fact that its production in pbarp scattering requires a two-step process.Comment: 15 pages, 13 figures, some typos corrected, some comments adde

    Coupled-channel effects in hadron-hadron correlation functions

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    Two-particle momentum correlation functions as measured in heavy ion collisions or in high-energetic proton-proton collisions are studied. Special emphasis is put on systems like ΛΛ\Lambda\Lambda or KpK^-p where effects from the coupling to other channels could be relevant. In both cases other channels open at relatively low momenta or are already open at the reaction threshold. To have a solid basis, realistic coupled-channel interactions for ΛΛΞNΛΣΣΣ\Lambda\Lambda-\Xi N-\Lambda\Sigma-\Sigma\Sigma and πΛπΣKˉN\pi\Lambda-\pi\Sigma-\bar KN are utilized in the actual calculations. It is found that the opening of the ΞN\Xi N channel leaves a trace in the ΛΛ\Lambda\Lambda correlation function that could be detectable in experiments. Should the proposed HH-dibaryon be located close to or below the ΞN\Xi N it will have a very pronounced effect. The presence of open channels in systems like Ξp\Xi^- p or KpK^-p does influence the correlation functions significantly at low momenta and will certainly complicate any dedicated analysis.Comment: 13 pages, 7 figures; table added, several comments adde

    Irreducible pionic effects in nucleon-deuteron scattering below 20 MeV

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    The consequences of a recently introduced irreducible pionic effect in low energy nucleon-deuteron scattering are analyzed. Differential cross-sections, nucleon (vector) and deuteron (vector and tensor) analyzing powers, and four different polarization transfer coefficients have been considered. This 3NF-like effect is generated by the pion-exchange diagram in presence of a two-nucleon correlation and is partially cancelled by meson-retardation contributions. Indications are provided that such type of effects are capable to selectively increase the vector (nucleon and deuteron) analyzing powers, while in the considered energy range they are almost negligible on the differential cross sections. These indications, observed with different realistic nucleon-nucleon interactions, provide additional evidences that such 3NF-like effects have indeed the potential to solve the puzzle of the vector analyzing powers. Smaller but non negligible effects are observed for the other spin observables. In some cases, we find that the modifications introduced by such pionic effects on these spin observables (other than the vector analyzing powers) are significant and interesting and could be observed by experiments.Comment: 33 pages, 17 figures, 3 Tables, RevTe

    Re-examining the X(4630)X(4630) resonance in the reaction e+eΛc+Λˉce^+e^-\rightarrow \Lambda^+_c\bar\Lambda^-_c

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    The reaction e+eΛc+Λˉce^+e^-\rightarrow \Lambda^+_c\bar\Lambda^-_c is investigated at energies close to the threshold with emphasis on the role played by the X(4630)X(4630) resonance. The interaction in the final Λc+Λˉc\Lambda^+_c \bar\Lambda^-_c system, constructed within chiral effective field theory and supplemented by a pole diagram that represents a bare X(4630)X(4630) resonance, is taken into account rigorously. The pole parameters of the X(4630)X(4630) are extracted and found to be compatible with the ones of the X(4660)X(4660) resonance that have been established in the reaction e+eπ+πψ(2S)e^+e^- \to \pi^+\pi^-\psi(2S). The actual result for the X(4630)X(4630) is M=(4652.5±3.4)M = (4652.5\pm 3.4) MeV and Γ=(62.6±5.6)\Gamma = (62.6\pm 5.6) MeV. Predictions for the Λc+\Lambda^+_c electromagnetic form factors in the timelike region are presented.Comment: 11 pages, 3 figure

    Charm production in antiproton-proton annihilation

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    We study the production of charmed mesons (D) and baryons (Lambda_c) in antiproton-proton (app) annihilation close to their respective production thresholds. The elementary charm production process is described by either baryon/meson exchange or by quark/gluon dynamics. Effects of the interactions in the initial and final states are taken into account rigorously. The calculations are performed in close analogy to our earlier study on app -> antiLambda-Lambda and app -> antiK-K by connecting the processes via SU(4) flavor symmetry. Our predictions for the antiLambda_c-Lambda_c production cross section are in the order of 1 to 7 mb, i.e. a factor of around 10-70 smaller than the corresponding cross sections for antiLambda-Lambda However, they are 100 to 1000 times larger than predictions of other model calculations in the literature. On the other hand, the resulting cross sections for antiD-D production are found to be in the order of 10^{-2} -- 10^{-1} microbarn and they turned out to be comparable to those obtained in other studies.Comment: 5 pages, 2 figures, Contribution to the proceedings of the 21st European Conference on Few-Body Problems in Physics, Salamanca, Spain, 30 August - 3 September 201
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