1,514 research outputs found

    Investigating the tetraquark structure of the new mesons

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    Using the QCD sum rule approach we investigate the possible four-quark structure of the recently observed mesons DsJ+(2317)D_{sJ}^{+}(2317), firstly observed by BaBaR, X(3872), firstly observed by BELLE and D0∗0(2308)D_0^{*0}(2308) observed by BELLE. We use diquark-antidiquark currents and work in full QCD, without relying on 1/mc1/m_c expansion. Our results indicate that a four-quark structure is acceptable for these mesons.Comment: 4 pages 1 eps figure, proceedings of the XVIII Workshop on Hadronic Interactions (RETINHA-18) Sao Paulo-S

    Self-bound Interacting QCD Matter in Compact Stars

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    The quark gluon plasma (QGP) at zero temperature and high baryon number is a system that may be present inside compact stars. It is quite possible that this cold QGP shares some relevant features with the hot QGP observed in heavy ion collisions, being also a strongly interacting system. In a previous work we have derived from the QCD Lagrangian an equation of state (EOS) for the cold QGP, which can be considered an improved version of the MIT bag model EOS. Compared to the latter, our equation of state reaches higher values of the pressure at comparable baryon densities. This feature is due to perturbative corrections and also to non-perturbative effects. Here we apply this EOS to the study of neutron stars, discussing the absolute stability of quark matter and computing the mass-radius relation for self-bound (strange) stars. The maximum masses of the sequences exceed two solar masses, in agreement with the recently measured values of the mass of the pulsar PSR J1614-2230, and the corresponding radii around 10-11 km

    On the energy dependence of the D^+/D^- production asymmetry

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    In this paper we discuss the origin of the asymmetry present in D meson production and its energy dependence. In particular, we have applied the meson cloud model to calculate the asymmetries in D^-/D^+ meson production in high energy p-p collisions and find a good agreement with recent LHCb data. Although small, this non-vanishing asymmetry may shed light on the role played by the charm meson cloud of the proton.Comment: 8 pages, 8 figures. arXiv admin note: text overlap with arXiv:hep-ph/000927

    Tetraquark Production in Double Parton Scattering

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    We develop a model to study tetraquark production in hadronic collisions. We focus on double parton scattering and formulate a version of the color evaporation model for the production of the X(3872)X(3872) and of the T4cT_{4c} tetraquark, a state composed by the ccˉccˉc \bar{c} c \bar{c} quarks. We find that the production cross section grows rapidly with the collision energy s\sqrt{s} and make predictions for the forthcoming higher energy data of the LHC.Comment: 13 pages, 3 figures. Corrections in the text and reference

    Nuclear shadowing in deep inelastic scattering on nuclei: a closer look

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    The measurement of the nuclear structure function F2A(x,Q2)F_2^A (x,Q^2) at the future electron-ion collider (EIC) will be of great relevance to understand the origin of the nuclear shadowing and to probe gluon saturation effects. Currently there are several phenomenological models, based on very distinct approaches, which describe the scarce experimental data quite successfully. One of main uncertainties comes from the schemes used to include the effects associated to the multiple scatterings and to unitarize the cross section. In this paper we compare the predictions of three different unitarization schemes of the nuclear structure function which use the same theoretical input to describe the projectile-nucleon interaction. In particular, we consider as input the predictions of the Color Glass Condensate formalism, which reproduce the inclusive and diffractive epep HERA data. Our results suggest that the experimental analysis of F2AF_2^A will be able to discriminate between the unitarization schemes.Comment: 16 pages, 4 figure

    Unintegrated parton distributions in nuclei

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    We study how unintegrated parton distributions in nuclei can be calculated from the corresponding integrated partons using the EPS09 parametrization. The role of nuclear effects is presented in terms of the ratio RA=uPDFA/Aâ‹…PDFNR^A=\text{uPDF}^A/A\cdot \text{PDF}^N for both large and small xx domains.Comment: 9 pages, 4 figure
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