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Measurement of photonuclear jet production in ultraperipheral (Formula presented) collisions at (Formula presented) with the ATLAS detector
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Measurement of photonuclear jet production in ultraperipheral (Formula presented) collisions at (Formula presented) with the ATLAS detector

J. Gallagher, C. M. Grant, M. J. Green, P. Jackson, A. X.Y. Kong, H. D. Pandya, T. A. Ruggeri, S. Saha, E. X.L. Ting, M. J. White, …
Physical review. D, 卷.111(5), 052006
01/03/2025
Web of Science ID: WOS:001639529700001

摘要

In ultrarelativistic heavy ion collisions at the LHC, each nucleus acts a sources of high-energy real photons that can scatter off the opposing nucleus in ultraperipheral photonuclear (gamma + A) collisions. Hard scattering processes initiated by the photons in such collisions provide a novel method for probing nuclear parton distributions in a kinematic region not easily accessible to other measurements. ATLAS has measured production of dijet and multijet final states in ultraperipheral Pb thorn Pb collisions at root s(NN) = 5.02 TeV using a dataset recorded in 2018 with an integrated luminosity of 1.72 nb(-1). Photonuclear final states are selected by requiring a rapidity gap in the photon direction; this selects events where one of the outgoing nuclei remains intact. Jets are reconstructed using the anti-kt algorithm with radius parameter, R = 0.4. Triple-differential cross sections, unfolded for detector response, are measured and presented using two sets of kinematic variables. The first set consists of the total transverse momentum (H-T), rapidity, and mass of the jet system. The second set uses H-T and particlelevel nuclear and photon parton momentum fractions, x(A) and z(gamma), respectively. The results are compared with leading-order perturbative QCD calculations of photonuclear jet production cross sections, where all leading order predictions using existing fits fall below the data in the shadowing region. More detailed theoretical comparisons will allow these results to strongly constrain nuclear parton distributions, and these data provide results from the LHC directly comparable to early physics results at the planned Electron-Ion Collider.

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https://doi.org/10.1103/PhysRevD.111.052006檢視
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引用書目主題
5 Physics
5.9 Particles & Fields
5.9.19 Beyond Standard Model
Web Of Science研究領域
Astronomy & Astrophysics
Physics, Particles & Fields
ESI研究領域
Physics

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