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Azimuthal asymmetries in J/psi-photon production at the EIC

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arxiv 2211.08709 v1 pith:DF2PXA4D submitted 2022-11-16 hep-ph

Azimuthal asymmetries in J/psi-photon production at the EIC

classification hep-ph
keywords asymmetriesazimuthaltmdsboundsphotonproductionusedaddition
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We calculate azimuthal asymmetries in back-to-back production of $J/\psi$ and a photon in electron-proton scattering process at the future electron-ion collider (EIC) using TMD factorization framework. We consider the cases where the proton is unpolarized or transversely polarized. For the formation of $J/\psi$, non-relativistic QCD (NRQCD) is used. We find that the cross-section gets contribution from only one color octet state, as a result, the azimuthal modulations become independent of the long-distance matrix elements (LDMEs), and thus can be used to probe, in particular the gluon TMDs which are dominant in this kinematics. We show estimates of the upper bounds of different azimuthal asymmetries using the positivity bounds on TMDs. In addition, we show estimate of asymmetries using the Gaussian parametrization of the TMDs.

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Cited by 4 Pith papers

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  2. Maximum phase-space density of linearly polarized gluon TMDs in the saturation region

    hep-ph 2026-05 unverdicted novelty 5.0

    Computes maximum phase-space density of linearly polarized gluon TMD h1^⊥g as ~2 α_s^{-3/2} (dipole) in saturation using Mueller occupancy and prior WW/dipole distributions, with numerical Collins-Soper study.

  3. Maximum phase-space density of linearly polarized gluon TMDs in the saturation region

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  4. The effect of TMD evolution on the Sivers asymmetry in back-to-back $J/\psi+\gamma$ and $J/\psi+\text{jet}$ production at the Electron-Ion-Collider

    hep-ph 2026-06 unverdicted novelty 4.0

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