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The longitudinal leading-twist distribution amplitude of J/ψJ/\psi meson within background field theory

Abstract

We make a detailed study on the J/ψJ/\psi meson longitudinal leading-twist distribution amplitude ϕ2;J/ψ\phi_{2;J/\psi}^\| by using the QCD sum rules within the background field theory. By keeping all the non-perturbative condensates up to dimension-six, we obtain accurate QCD sum rules for the moments ξn;J/ψ\langle\xi_{n;J/\psi}^\|\rangle. The first three ones are ξ2;J/ψ=0.083(12)\langle\xi_{2;J/\psi}^\|\rangle=0.083(12), ξ4;J/ψ=0.015(5)\langle\xi_{4;J/\psi}^\|\rangle=0.015(5) and ξ6;J/ψ=0.003(2)\langle\xi_{6;J/\psi}^\|\rangle=0.003(2), leading to a single peaked behavior for ϕ2;J/ψ\phi_{2;J/\psi}^\| which is sharper than the previous ones around the region of x0.5x\sim0.5. As an application, we adopt the QCD light-cone sum rules to calculate the BcB_c meson semileptonic decay Bc+J/ψ+νB_c^+ \to J/\psi \ell^+ \nu_\ell. We obtain Γ(Bc+J/ψ+ν)=(89.6719.06+24.76)×1015 GeV\Gamma(B_c^+ \to J/\psi \ell^+ \nu_\ell) = (89.67^{+24.76}_{-19.06}) \times 10^{-15}~{\rm GeV} and (J/ψ+ν)=0.2170.057+0.069\Re(J/\psi \ell^+ \nu_\ell) = 0.217^{+0.069}_{-0.057}, which agree with the next-to-leading order pQCD prediction and the new CDF measurement within errors.Comment: 10 pages, 4 figure

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