2023-11-30 07:04 |
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2023-11-30 07:04 |
Picosecond pulsed 532 nm laser system for roughening and secondary electron yield reduction of inner surfaces of up to 15 m long tubes
/ Bez, Elena (CERN ; Leipzig U.) ; Himmerlich, Marcel (CERN) ; Beaudou, Benoit (XLIM, Limoges) ; Portilla, Ana Karen Reascos (CERN) ; Wackerow, Stefan (U. Dundee) ; Rimoldi, Martino (CERN) ; Pfeiffer, Stephan (CERN) ; Wiesendanger, Markus (Zurich U.) ; Benabid, Fetah (XLIM, Limoges) ; Taborelli, Mauro (CERN) et al.
Laser-induced surface structuring is a promising method to suppress electron mulitpacting in the vacuum pipes of particle accelerators. Electrons are scattered inside the rough surface structure, resulting in a low Secondary Electron Yield (SEY) of the material. [...]
2023 - 11 p.
- Published in : Rev. Sci. Instrum. 94 (2023) 103007
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2023-11-30 07:04 |
Beam merging assisted by a bent crystal
/ Scandale, W (Imperial Coll., London ; INFN, Rome) ; Cerutti, F (CERN) ; Esposito, L S (CERN) ; Gilardoni, S (CERN) ; Losito, R (CERN) ; Smirnov, G I (CERN) ; Giribono, A (Frascati) ; Bauce, M (INFN, Rome) ; Collamati, F (INFN, Rome) ; Valente, P (INFN, Rome) et al.
Bunch merging is a well-established technique to increase the intensity of synchrotrons and the luminosity of circular colliders. We suggest to exploit a combination of channeling, volume reflection and amorphous interactions in a bent crystal for beam merging in a transfer line. [...]
2023 - 6 p.
- Published in : Eur. Phys. J. Plus 138 (2023) 981
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2023-11-30 07:04 |
Leveraging an open source serverless framework for high energy physics computing
/ Padulano, Vincenzo Eduardo (Valencia, Polytechnic U. ; CERN) ; Cortés, Pablo Oliver (Valencia, Polytechnic U.) ; Alonso‑Jordá, Pedro (Valencia, Polytechnic U.) ; Saavedra, Enric Tejedor (CERN) ; Risco, Sebastián (Valencia, Polytechnic U.) ; Moltó, Germán (Valencia, Polytechnic U.)
CERN (Centre Europeen pour la Recherce Nucleaire) is the largest research centre for high energy physics (HEP). It offers unique computational challenges as a result of the large amount of data generated by the large hadron collider. [...]
2023 - 26 p.
- Published in : J. Supercomput. 79 (2023) 8940-8965
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2023-11-30 07:04 |
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2023-11-30 07:04 |
An aerogel RICH detector for the next generation heavy-ion experiment at LHC
/ Volpe, Giacomo (Bari U. ; INFN, Bari)
/ALICE Collaboration
The ALICE collaboration is proposing a new apparatus, ALICE 3, to investigate the Quark Gluon Plasma (QGP) properties. In this context, conceptual studies for the development of a RICH detector for ALICE 3 are ongoing. [...]
2023 - 4 p.
- Published in : Nucl. Instrum. Methods Phys. Res., A 1058 (2024) 168833
In : 11th International Workshop on Ring Imaging Cherenkov Detectors (RICH 2022), Edinburgh, United Kingdom, 12 - 16 Sep 2022, pp.168833
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2023-11-30 07:04 |
Test beam results of the fiber-sampling dual-readout calorimeter
/ Giaz, A (INFN, Milan ; Insubria U., Varese) ; Santoro, R (INFN, Milan ; Insubria U., Varese) ; Ampilogov, N (INFN, Milan ; Insubria U., Varese) ; Caccia, M (INFN, Milan ; Insubria U., Varese) ; Chmill, V (Boskovic Inst., Zagreb) ; Cometti, S (INFN, Milan ; Insubria U., Varese) ; Ferrari, R (INFN, Pavia) ; Gaudio, G (INFN, Pavia) ; Giacomelli, P (INFN, Bologna) ; Karadzhinova Ferrer, A (Boskovic Inst., Zagreb) et al.
The dual-readout calorimetric technique reconstructs the event-by-event electromagnetic fraction of the hadronic shower through the simultaneous measurement of scintillating (S) and Cherenkov (C) light produced by the shower development. The new generation of prototypes, based on Silicon Photomultipliers (SiPMs) readout, adds unprecedented granularity to the well-known high-energy resolution. [...]
2022
In : 15th Pisa Meeting on Advanced Detectors, La Biodola - Isola D'elba, Italy, 22 - 28 May 2022, pp.167964
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2023-11-30 07:04 |
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2023-11-30 07:04 |
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2023-11-30 07:03 |
Antineutron Reconstruction and Identification in Electromagnetic Calorimeter
/ Gordeev, P (Kurchatov Inst., Moscow ; Moscow Phys. Eng. Inst.)
/ALICE Collaboration
The ALICE experiment at the LHC is designed to explore the hot and dense medium produced in heavy-ion collisions, the so-called quark–gluon plasma (QGP). Antineutron production is a poorly explored domain of high energy physics, although it is interesting in the context of hadrons decaying into antineutrons, the interaction of antineutrons with hadrons, and searching for bound states of antineutrons. [...]
2023 - 5 p.
- Published in : Phys. At. Nucl. 86 (2023) 827-831
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