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1.
Imaging the initial condition of heavy-ion collisions and nuclear structure across the nuclide chart / Jia, Jiangyong (Stony Brook U.) ; Giacalone, Giuliano (U. Heidelberg, ITP) ; Bally, Benjamin (IRFU, Saclay) ; Brandenburg, James Daniel (Brookhaven Natl. Lab.) ; Heinz, Ulrich (Ohio State U.) ; Huang, Shengli (Stony Brook U.) ; Lee, Dean (Michigan State U.) ; Lee, Yen-Jie (MIT) ; Loizides, Constantin (Oak Ridge) ; Li, Wei (Rice U.) et al.
High-energy nuclear collisions encompass three key stages: the structure of the colliding nuclei informed by low-energy nuclear physics, the initial condition (IC) leading to the formation of quark-gluon plasma (QGP), and the hydrodynamic expansion and hadronization of the QGP leading to final-state hadrons observed experimentally. Recent advances in experimental and theoretical methods have ushered in a precision era, enabling an increasingly accurate understanding of these stages. [...]
arXiv:2209.11042.- 2024-12-11 - 25 p. - Published in : Nucl. Sci. Tech. 35 (2024) 220 Fulltext: 2209.11042 - PDF; document - PDF;
2.
The ProtoDUNE-SP LArTPC Electronics Production, Commissioning, and Performance / Adams, D. (Brookhaven) ; Bass, M. (Brookhaven) ; Bishai, M. (Brookhaven) ; Bromberg, C. (Michigan State U.) ; Calcutt, J. (Michigan State U.) ; Chen, H. (Brookhaven) ; Fried, J. (Brookhaven) ; Furic, I. (Florida U.) ; Gao, S. (Brookhaven) ; Gastler, D. (Boston U.) et al.
The ProtoDUNE-SP detector is a large-scale prototype of the Single-Phase (SP) Liquid Argon Time Projection Chamber (LArTPC) design proposed for the Deep Underground Neutrino Experiment (DUNE). 15,360 LArTPC wires are instrumented with low electronic noise pre-amplifier and digitization ASICs integrated into Front End Motherboards (FEMBs) operating at cryogenic temperature within the cryostat. [...]
arXiv:2002.01782.- 2020-06-12 - 32 p. - Published in : JINST 15 (2020) P06017 Fulltext: PDF; Fulltext from publisher: PDF;
3.
Artificial Intelligence for the Electron Ion Collider (AI4EIC) / Allaire, C. (IJCLab, Orsay) ; Ammendola, R. (INFN, Rome2) ; Aschenauer, E.-C. (Brookhaven) ; Balandat, M. (SLAC) ; Battaglieri, M. (INFN, Genoa) ; Bernauer, J. (SUNY, Stony Brook ; Yale U. ; RIKEN BNL) ; Bondì, M. (INFN, Catania) ; Branson, N. (Messiah Coll. ; Drexel U.) ; Britton, T. (Jefferson Lab) ; Butter, A. (LPNHE, Paris) et al.
The Electron-Ion Collider (EIC), a state-of-the-art facility for studying the strong force, is expected to begin commissioning its first experiments in 2028. This is an opportune time for artificial intelligence (AI) to be included from the start at this facility and in all phases that lead up to the experiments. [...]
arXiv:2307.08593; FERMILAB-CONF-23-407-AD.- 2024-02-15 - 27 p. - Published in : Comput. Softw. Big Sci. 8 (2024) 5 Fulltext: 2307.08593 - PDF; 154e04fa6e7cde7b5961a079c6081ef6 - PDF; Fulltext from Publisher: document - PDF; s41781-024-00113-4 - PDF; External link: Fermilab Library Server
In : Artificial Intelligence for the Electron Ion Collider (AI4EIC), Washington, DC, United States, 28 Nov - 1 Dec 2023, pp.5
4.
Opportunities for precision QCD physics in hadronization at Belle II -- a snowmass whitepaper / Accardi, A. (Hampton U. ; Jefferson Lab) ; Chien, Y.T. (SUNY, Stony Brook ; YITP, Stony Brook ; Georgia State U.) ; d'Enterria, D. (CERN) ; Deshpande, A. (SUNY, Stony Brook ; Brookhaven) ; Dilks, C. (Duke U.) ; Gutierrez Garcia, P.A. (Madrid U.) ; Jacobs, W.W. (Indiana U.) ; Krauss, F. (Durham U., IPPP) ; Gomez, S. Leal (Vienna U.) ; Mondal, M. Mouli (SUNY, Stony Brook) et al.
This document presents a selection of QCD studies accessible to high-precision studies with hadronic final states in $e^+e^-$ collisions at Belle II. [...]
arXiv:2204.02280.
- 58 p.
eConf - Fulltext
5.
Hot QCD White Paper / Arslandok, M. (Yale U.) ; Bass, S.A. (Duke U.) ; Baty, A.A. (Rice U.) ; Bautista, I. (Puebla U., Inst. Fis.) ; Beattie, C. (Yale U.) ; Becattini, F. (Florence U.) ; Bellwied, R. (Houston U.) ; Berdnikov, Y. (St. Petersburg Polytechnic Inst.) ; Berdnikov, A. (St. Petersburg Polytechnic Inst.) ; Bielcik, J. (Prague, Tech. U.) et al.
Hot QCD physics studies the nuclear strong force under extreme temperature and densities. [...]
arXiv:2303.17254.
- 190.
Fulltext
6.
Separation of track- and shower-like energy deposits in ProtoDUNE-SP using a convolutional neural network / DUNE Collaboration
Liquid argon time projection chamber detector technology provides high spatial and calorimetric resolutions on the charged particles traversing liquid argon. As a result, the technology has been used in a number of recent neutrino experiments, and is the technology of choice for the Deep Underground Neutrino Experiment (DUNE). [...]
arXiv:2203.17053; FERMILAB-PUB-22-240-AD-ESH-LBNF-ND-SCD; CERN-EP-2022-077.- Geneva : CERN, 2022-10-12 - 31 p. - Published in : Eur. Phys. J. C 82 (2022) 903 Fulltext: jt - PDF; CERN-EP-DRAFT-MISC-2022-002 - PDF; 2203.17053 - PDF; Fulltext from Publisher: PDF; Fulltext from publisher: PDF; External link: Fermilab Library Server
7.
Scintillation light detection in the 6-m drift-length ProtoDUNE Dual Phase liquid argon TPC / DUNE Collaboration
DUNE is a dual-site experiment for long-baseline neutrino oscillation studies, neutrino astrophysics and nucleon decay searches. ProtoDUNE Dual Phase (DP) is a 6x6x6m3 liquid argon time-projection-chamber (LArTPC) that recorded cosmic-muon data at the CERN Neutrino Platform in 2019-2020 as a prototype of the DUNE Far Detector. [...]
arXiv:2203.16134; CERN-EP-DRAFT-MISC-2022-003; FERMILAB-PUB-22-242-LBNF; CERN-EP-DRAFT-MISC-2022-003; FERMILAB-PUB-22-242-LBNF.- 2022-07-16 - 31 p. - Published in : Eur. Phys. J. C 82 (2022) 618 Fulltext: 2203.16134 - PDF; Publication - PDF; jt - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
8.
The present and future of QCD / Achenbach, P. (Jefferson Lab) ; Adhikari, D. (Virginia Tech.) ; Afanasev, A. (George Washington U. ; Jefferson Lab) ; Afzal, F. (Bonn U., HISKP ; Bonn U.) ; Aidala, C.A. (Michigan U.) ; Al-bataineh, A. (Jordan U. Sci. Tech. ; Yarmouk U. ; Kansas U.) ; Almaalol, D.K. (Illinois U., Urbana ; Illinois U., Urbana (main)) ; Amaryan, M. (Old Dominion U. ; Old Dominion U. (main)) ; Androić, D. (Zagreb U.) ; Armstrong, W.R. (Argonne ; Argonne, PHY) et al.
This White Paper presents the community inputs and scientific conclusions from the Hot and Cold QCD Town Meeting that took place September 23-25, 2022 at MIT, as part of the Nuclear Science Advisory Committee (NSAC) 2023 Long Range Planning process. A total of 424 physicists registered for the meeting. [...]
arXiv:2303.02579; JLAB-PHY-23-3808.- 2024-04-15 - 111 p. - Published in : Nucl. Phys. A 1047 (2024) 122874 Fulltext: 2303.02579 - PDF; Publication - PDF; External link: JLab Document Server
9.
ICARUS at the Fermilab Short-Baseline Neutrino program: initial operation / ICARUS Collaboration
The ICARUS collaboration employed the 760-ton T600 detector in a successful three-year physics run at the underground LNGS laboratory studying neutrino oscillations with the CERN Neutrino to Gran Sasso beam (CNGS) and searching for atmospheric neutrino interactions. ICARUS performed a sensitive search for LSND-like anomalous $\nu_e$ appearance in the CNGS beam, which contributed to the constraints on the allowed parameters to a narrow region around 1 eV$^2$, where all the experimental results can be coherently accommodated at 90% C.L.. [...]
arXiv:2301.08634; FERMILAB-PUB-23-010-ND.- 2023-06-04 - Published in : Eur. Phys. J. C 83 (2023) 467 Fulltext: dee264f4cbfb62c43fc89cf67c861b61 - PDF; Publication - PDF; FERMILAB-PUB-23-010-ND - PDF; 2301.08634 - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
10.
Impact of jet-production data on the next-to-next-to-leading-order determination of HERAPDF2.0 parton distributions / H1 Collaboration
The HERAPDF2.0 ensemble of parton distribution functions (PDFs) was introduced in 2015. The final stage is presented, a next-to-next-to-leading-order (NNLO) analysis of the HERA data on inclusive deep inelastic $ep$ scattering together with jet data as published by the H1 and ZEUS collaborations. [...]
arXiv:2112.01120; DESY-21-206.- 2022-03-21 - 43 p. - Published in : Eur. Phys. J. C 82 (2022) 243 Fulltext: 2112.01120 - PDF; document - PDF;

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