1,163 research outputs found

    Exclusive electroproduction of J/psi mesons

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    A nonperturbative calculation of elastic electroproduction of the J/psi meson is presented and compared to the experimental data. Our model describes well the observed dependences of the cross sections on the photon virtuality Q2 and on the energy, and the measured ratio R of longitudinal to transverse cross sections.Comment: Five *.eps figure

    Nonperturbative QCD treatment of J/ψJ/\psi photoproduction

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    We present a nonperturbative QCD calculation of elastic J/ψJ/\psi meson production in photon-proton scattering at high energies. Using light cone wave functions of the photon and vector mesons, and the framework of the model of the stochastic QCD vacuum, we calculate the differential and integrated elastic cross sections for \gamma p \goto J/\psi p . With an energy dependence following the two-pomeron model we are able to give a consistent description of the integrated cross sections and the differential cross sections at low ∣t∣|t| in the range from 20 GeV up to the highest HERA energies. We discuss different approaches to introduce saturation and find no specific effects up to energies presently available. We also calculate and compare to experiments the cross section for υ\upsilon photoproduction.Comment: 24 pages, 10 figures, 4 table

    Direct extraction of the chiral quark condensate and bounds on the light quark masses

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    We select sum rules from which one can extract directly reliable limits on the size of the chiral symmetry breaking light quark condensate . Combined results from the nucleon and B∗−BB^*-B mass-splitting sum rules give a result compatible with the standard value: (1GeV)≃(−229MeV)3 (1 GeV) \simeq (-229 MeV)^3, through the determinations of the quark-gluon mixed condensate. The vector form factor of the D\rar K^*l\nu semi-leptonic decay leads to the range 0.6≤(−229MeV)3≤1.50.6\leq (-229 MeV)^3 \leq 1.5. The upper limit combined with the Gell-Mann-Oakes-Renner (GMOR) relation implies the interesting lower bound on the sum of light quark masses:(mu+md)(1GeV)≥(m_u+m_d) (1 GeV) \geq 9.4 MeV, which combined with the ratio of light quark masses from chiral perturbation theory leads to ms(1GeV)≥(121±12)m_s (1 GeV) \geq (121\pm 12) MeV. The lower limit combined with the positivity of the mq2m_q^2 contribution to the GMOR relation leads to the upper bound : (mu+md)(1GeV)≤(m_u+m_d) (1 GeV) \leq 15.7 MeV, which is independent on the nature of chiral symmetry breaking.Comment: Minor modifications and corrections. Version to appear in Phys. Lett.

    Universality in the Electroproduction of Vector Mesons

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    We study universality in the electroproduction of vector mesons using a unified nonperturbative approach which has already proved to reproduce extremely well the available experimental data. In this framework, after the extraction of factors that are specific of each vector meson, we arrive at a reduced integrated elastic cross section which is universal. Our calculations suggest a finite infrared behavior for the strong coupling constant.Comment: 22 pages, 10 figure

    Odd C-P contributions to diffractive processes

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    We investigate contributions to diffractive scattering, which are odd under C- and P-parity. Comparison of p-pˉ\bar p and p-p scattering indicates that these odderon contributions are very small and we show how a diquark clustering in the proton can explain this effect. A good probe for the odderon exchange is the photo- and electroproduction of pseudo-scalar mesons. We concentrate on the pi^0 and show that the quasi elastic pi^0-production is again strongly suppressed for a diquark structure of the proton whereas the cross sections for diffractive proton dissociation are larger by orders of magnitude and rather independent of the proton structure.Comment: 18 pages, LaTex2e, graphicx package, 14 eps figures include
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