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20232025
most citedPartonic distribution functions and amplitudes using tensor network methods

9 citations · 22 across the 7 of their papers we have counts for

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hep-ph2025

Probing gluon saturation with forward di-hadron correlations in proton-nucleus collisions

Paul Caucal, Zhong-Bo Kang, Piotr Korcyl +5

We present a detailed numerical investigation of semi-inclusive forward di-hadron production in proton-nucleus collisions employing the Color Glass Condensate effective theory. We…

hep-ph2025★ 9 cited

Partonic distribution functions and amplitudes using tensor network methods

Zhong-Bo Kang, Noah Moran, Peter Nguyen +1

Calculations of the parton distribution function (PDF) and distribution amplitude (DA) are highly relevant to core experimental programs as they provide non-perturbative inputs to…

hep-ph2024

Direct quarkonium production in DIS from a joint CGC and NRQCD framework

Vincent Cheung, Zhong-Bo Kang, Farid Salazar +1

We compute the differential cross section for direct quarkonium production in high-energy electron-nucleus collisions at small . Our computation is performed within the nonrelat…

hep-ph2024★ 4 cited

Color Glass Condensate meets High Twist Expansion

Yu Fu, Zhong-Bo Kang, Farid Salazar +2

We establish the correspondence between two well-known frameworks for QCD multiple scattering in nuclear media: the Color Glass Condensate (CGC) and the High-Twist (HT) expansion f…

hep-ph2023

Nuclear modified transverse momentum dependent parton distribution and fragmentation functions

Mishary Alrashed, Zhong-Bo Kang, John Terry +2

In this study, we extend our previous global analysis of nuclear-modified transverse momentum distribution functions (nTMDs) to also consider the nuclear-modified collinear fragmen…

hep-ph2023

Correspondence between Color Glass Condensate and High-Twist Formalism

Yu Fu, Zhong-Bo Kang, Farid Salazar +2

The Color Glass Condensate (CGC) effective theory and the collinear factorization at high-twist (HT) are two well-known frameworks describing perturbative QCD multiple scatterings…