Probing Heavy-Quark Spin Symmetry in Double J/ψ Hadroproduction
Zhi-Guo He, Xiao-Bo Jin, Bernd A. Kniehl
Abstract
We perform the first complete O(αs5) analysis of the prompt hadroproduction of J/ψ pairs with large transverse momenta pTψψ in the nonrelativistic-QCD factorization framework, including all possible Fock state combinations cc(m)+cc(n), with m,n=3S1[1,8],1S0[8],3PJ[1,8]. We observe that CMS and ATLAS data constrain a specific linear combination of the long-distance matrix elements (LDMEs) J/ψ(1S0[8]) and J/ψ(3P0[8]). In conjunction with two other combinations fixed by single prompt J/ψ hadroproduction, we gain a new LDME set, which turns out to be largely compatible with the world data of prompt J/ψ yield and polarization and to probe heavy-quark spin symmetry, by which agreement is established with LHCb data of prompt ηc yield. Our O(αs5) predictions also nicely agree with CMS and ATLAS data in the lowest bins of J/ψ pair invariant mass mψψ, beyond leading-order kinematics.
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