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CARQUIN, EDSON
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CARQUIN, EDSON
Campus / Sede
Campus Casa Central Valparaíso
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17342058700
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- PublicationModelling and computational improvements to the simulation of single vector-boson plus jet processes for the ATLAS experiment(2022-08-01)
;Aad, G. ;Abbott, B. ;Abbott, D. C. ;Abed Abud, A. ;Abeling, K. ;Abhayasinghe, D. K. ;Abidi, S. H. ;Aboulhorma, A. ;Abramowicz, H. ;Abreu, H. ;Abulaiti, Y. ;Abusleme Hoffman, A. C. ;Acharya, B. S. ;Achkar, B. ;Adam, L. ;Adam Bourdarios, C. ;Adamczyk, L. ;Adamek, L. ;Addepalli, S. V. ;Adelman, J. ;Adiguzel, A. ;Adorni, S. ;Adye, T. ;Affolder, A. A. ;Afik, Y. ;Agapopoulou, C. ;Agaras, M. N. ;Agarwala, J. ;Aggarwal, A. ;Agheorghiesei, C. ;Aguilar-Saavedra, J. A. ;Ahmad, A. ;Ahmadov, F. ;Ahmed, W. S. ;Ai, X. ;Aielli, G. ;Aizenberg, I. ;Akbiyik, M. ;Åkesson, T. P.A. ;Akimov, A. V. ;Al Khoury, K. ;Alberghi, G. L. ;Albert, J. ;Albicocco, P. ;Alconada Verzini, M. J. ;Alderweireldt, S. ;Aleksa, M. ;Aleksandrov, I. N. ;Alexa, C. ;Alexopoulos, T. ;Alfonsi, A. ;Alfonsi, F. ;Alhroob, M. ;Ali, B. ;Ali, S. ;Aliev, M. ;Alimonti, G. ;Allaire, C. ;Allbrooke, B. M.M. ;Allport, P. P. ;Aloisio, A. ;Alonso, F. ;Alpigiani, C. ;Alunno Camelia, E. ;Alvarez Estevez, M. ;Alviggi, M. G. ;Amaral Coutinho, Y. ;Ambler, A. ;Ambroz, L. ;Amelung, C. ;Amidei, D. ;Amor Dos Santos, S. P. ;Amoroso, S. ;Amos, K. R. ;Amrouche, C. S. ;Ananiev, V. ;Anastopoulos, C. ;Andari, N. ;Andeen, T. ;Anders, J. K. ;Andrean, S. Y. ;Andreazza, A. ;Angelidakis, S. ;Angerami, A. ;Anisenkov, A. V. ;Annovi, A. ;Antel, C. ;Anthony, M. T. ;Antipov, E. ;Antonelli, M. ;Antrim, D. J.A. ;Anulli, F. ;Aoki, M. ;Aparisi Pozo, J. A. ;Aparo, M. A.; ; ; ;C. M. Robles GuajardoThis paper presents updated Monte Carlo configurations used to model the production of single electroweak vector bosons (W, Z/γ∗) in association with jets in proton-proton collisions for the ATLAS experiment at the Large Hadron Collider. Improvements pertaining to the electroweak input scheme, parton-shower splitting kernels and scale-setting scheme are shown for multi-jet merged configurations accurate to next-to-leading order in the strong and electroweak couplings. The computational resources required for these set-ups are assessed, and approximations are introduced resulting in a factor three reduction of the per-event CPU time without affecting the physics modelling performance. Continuous statistical enhancement techniques are introduced by ATLAS in order to populate low cross-section regions of phase space and are shown to match or exceed the generated effective luminosity. This, together with the lower per-event CPU time, results in a 50% reduction in the required computing resources compared to a legacy set-up previously used by the ATLAS collaboration. The set-ups described in this paper will be used for future ATLAS analyses and lay the foundation for the next generation of Monte Carlo predictions for single vector-boson plus jets production.Scopus© Citations 7