TMD evolution effect on $\cos2ϕ$ azimuthal asymmetry in a back-to-back production of $J/ψ$ and jet at the EIC

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Hauptverfasser: Kishore, Raj, Mukherjee, Asmita, Pawar, Amol, Rajesh, Sangem, Siddiqah, Mariyah
Format: Preprint
Veröffentlicht: 2024
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author Kishore, Raj
Mukherjee, Asmita
Pawar, Amol
Rajesh, Sangem
Siddiqah, Mariyah
author_facet Kishore, Raj
Mukherjee, Asmita
Pawar, Amol
Rajesh, Sangem
Siddiqah, Mariyah
contents A back-to-back semi-inclusive $J/ψ+ jet$ production is a promising process to study gluon transverse momentum distribution (TMDs) at the future electron-ion collider (EIC). A back-to-back configuration allows a higher transverse momentum for $J/ψ$. We present an extension of a previous work where we studied $\cos2ϕ$ azimuthal asymmetry within the TMD factorization framework for this process. We present and compare the effect of TMD evolution on the asymmetry, in two approaches that differ in the parameterization of the perturbative tails of the TMDs and the non-perturbative factors. We show that the asymmetry depends on the parameterizations of the non-perturbative Sudakov factors in the larger $b_T$ region and on the perturbative part of the evolution kernel. We use NRQCD to estimate the $J/ψ$ production and show the effect of using different long-distance matrix element (LDME) sets. Overall, the asymmetry after incorporating TMD evolution is small, but increases with the transverse momentum imbalance of the $J/ψ$-jet pair.
format Preprint
id arxiv_https___arxiv_org_abs_2408_05698
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle TMD evolution effect on $\cos2ϕ$ azimuthal asymmetry in a back-to-back production of $J/ψ$ and jet at the EIC
Kishore, Raj
Mukherjee, Asmita
Pawar, Amol
Rajesh, Sangem
Siddiqah, Mariyah
High Energy Physics - Phenomenology
A back-to-back semi-inclusive $J/ψ+ jet$ production is a promising process to study gluon transverse momentum distribution (TMDs) at the future electron-ion collider (EIC). A back-to-back configuration allows a higher transverse momentum for $J/ψ$. We present an extension of a previous work where we studied $\cos2ϕ$ azimuthal asymmetry within the TMD factorization framework for this process. We present and compare the effect of TMD evolution on the asymmetry, in two approaches that differ in the parameterization of the perturbative tails of the TMDs and the non-perturbative factors. We show that the asymmetry depends on the parameterizations of the non-perturbative Sudakov factors in the larger $b_T$ region and on the perturbative part of the evolution kernel. We use NRQCD to estimate the $J/ψ$ production and show the effect of using different long-distance matrix element (LDME) sets. Overall, the asymmetry after incorporating TMD evolution is small, but increases with the transverse momentum imbalance of the $J/ψ$-jet pair.
title TMD evolution effect on $\cos2ϕ$ azimuthal asymmetry in a back-to-back production of $J/ψ$ and jet at the EIC
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2408.05698