Zentrum für Technologie und Transfer | ZTT
Hochschule Worms
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Acharya, S.; Adamová, D.; Keidel, R. et al.
Study of charged particle production at high pT using event topology in pp, p–Pb and Pb–Pb collisions at sNN=5.02TeVPhysics Letters B. Bd. 843. Elsevier B.V. 2023 S. 1 - 14
Acharya, S.; Adamová, D.; Keidel, R. et al.
Symmetry plane correlations in Pb–Pb collisions at $${{\sqrt{s_\text {NN}}}} =2.76$$ TeVThe European Physical Journal C. Bd. 83. H. 7. Springer Science and Business Media LLC 2023 S. 1 - 21
Acharya, S.; Adamová, D.; Keidel, R.
System size dependence of hadronic rescattering effect at LHC energiesarXiv.org (Hrsg). Genf. 2023 S. 1 - 26
Acharya, S.; Adamová, D.; Keidel, R. et al.
System-size dependence of the charged-particle pseudorapidity density at sNN=5.02TeV for pp, p Pb, and Pb Pb collisionsPhysics Letters B. Bd. 845. Elsevier B.V. 2023 S. 1 - 13
Aehle, M.; Alme, J.; Barnaföldi, G.G. et al.
The Bergen proton CT systemJournal of Instrumentation. Bd. 18. H. 2. IOP Publishing 2023 2051
Kortus, Tobias; Keidel, Ralf; Gauger, Nicolas R.
Towards Neural Charged Particle Tracking in Digital Tracking Calorimeters with Reinforcement LearningTransactions on Pattern Analysis and Machine Intelligence. Bd. 0. IEEE 2023 S. 1 - 14
Acharya, S.; Adamová, D.; Keidel, R. et al.
Towards the understanding of the genuine three-body interaction for p–p–p and p–p–$$\Lambda $$The European Physical Journal A. Bd. 59. H. 7. Springer 2023 S. 1 - 22
Acharya, S.; Adamová, D.; Keidel, R. et al.
Two-particle transverse momentum correlations in pp and p-Pb collisions at energies available at the CERN Large Hadron ColliderPhysical Review C. Bd. 107. H. 5. American Physical Society (APS) 2023 S. 1 - 20
Schilling, Alexander; Aehle, Max; Alme, Johan et al.
Uncertainty-aware spot rejection rate as quality metric for proton therapy using a digital tracking calorimeterPhysics in Medicine & Biology. Bd. 68. H. 19. IOP Publishing 2023 194001
Acharya, S.; Adamová, D.; Keidel, R. et al.
Underlying-event properties in pp and p–Pb collisions at $$ \sqrt{s_{\textrm{NN}}} $$ = 5.02 TeVJournal of High Energy Physics. Bd. 2023. H. 6. Springer 2023 S. 1 - 38