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Hard-photon-triggered jets in p- p and A-A collisions

Sirimanna, C.; Tachibana, Y.; Majumder, A.; Angerami, A.; Arora, R.; Bass, S. A.; Chen, Y.; Datta, R.; Du, L.; Ehlers, R.; Elfner, H.; Fries, R. J.; Gale, C.; He, Y.; Jacak, B. V.; Jacobs, P. M.; Jeon, S.; Ji, Y.; Jonas, F.; Kasper, L.; Kordell, M.; Kumar, A.; Kunnawalkam-Elayavalli, R.; Latessa, J.; Lee, Y.-J.; Lemmon, R.; Luzum, M.; Mak, S.; Mankolli, A.; Martin, C.; Mehryar, H.; Mengel, T.; Nattrass, C.; Norman, J.; Parker, C.; Paquet, J.-F.; Putschke, J. H.; Roch, H.; Roland, G.; Schenke, B.; Schwiebert, L.; Sengupta, A.; Shen, C.; Singh, M.; Soeder, D.; Soltz, R. A.; Soudi, I.; Velkovska, J.; Vujanovic, G.; Wang, X.-N.; Wu, X.; Zhao, W. (2025).泭.泭Physical Review C, 111(6), 064911.泭

High-energy collisions betweenprotons泭棗娶泭heavy ionscan produce energeticphotons(particles of light) andjets, which are sprays of particles created when quarks or gluons are produced in a collision. Studying thesephoton-triggered jetshelps physicists understand how jets lose energy as they travel through the extremely hot, dense state of matter known as thequark-gluon plasma, which is created in heavy-ion collisions. In this study, the researchers used computer simulations based on a multistage model of jet evolution to predict several properties of photon-triggered jets and compared the results with measurements from theATLAS,泭CMS, andSTARexperiments. The model closely matched experimental results for several key measurements, including how often photon-triggered jets are observed, the relationship between the energies of the jet and the accompanying photon, and the angular separation between them. The researchers also found that including additional sources of photonsspecificallybremsstrahlung photons(produced when charged particles are deflected) and photons from particle decaysimproved agreement with experimental data, particularly in certain energy ranges. These findings demonstrate that the multistage model can accurately describe photon-triggered jet behavior and highlight the importance of accounting for multiple photon sources when studying jet energy loss in heavy-ion collisions.

Fig 1

Nuclear modification factor氯h朝as a function of jet- for photon-triggered jet for central010%(left) and semicentral1030%(right) Pb-Pb collisions ath=5.02TeV. The results frommatter +lbtwithinjetscapefor full events (solid lines) and prompt photon events (dashed lines) are compared with ATLAS data[66].

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