Nothing Special   »   [go: up one dir, main page]

CERN Accelerating science

Article
Report number arXiv:2303.12571
Title The New Small Wheel electronics
Author(s) Iakovidis, G. (Brookhaven) ; Levinson, L. (Weizmann Inst.) ; Afik, Y. (Technion) ; Alexa, C. (Bucharest, IFIN-HH) ; Alexopoulos, T. (Natl. Tech. U., Athens) ; Ameel, J. (Michigan U.) ; Amidei, D. (Michigan U.) ; Antrim, D. (UC, Irvine ; Unlisted, US, CA) ; Badea, A. (Imperial Coll., London) ; Bakalis, C. (Brookhaven ; Natl. Tech. U., Athens ; SLAC) ; Boterenbrood, H. (NIKHEF, Amsterdam) ; Brener, R.S. (Technion ; Weizmann Inst.) ; Chan, S. (Imperial Coll., London ; Military Academy, West Point) ; Chapman, J. (Michigan U.) ; Chatzianastasiou, G. (CERN) ; Chen, H. (Brookhaven) ; Chu, M.C. (Hong Kong, Chinese U.) ; Coliban, R.M. (Transilvania U., Brasov) ; de Paiva, T. Costa (Massachusetts U., Amherst) ; de Geronimo, G. (Brookhaven ; Military Academy, West Point) ; Edgar, R. (Michigan U.) ; Felt, N. (Imperial Coll., London) ; Francescato, S. (Imperial Coll., London) ; Franklin, M. (Imperial Coll., London) ; Geralis, T. (Democritos Nucl. Res. Ctr.) ; Gigliotti, K. (Arizona U.) ; Giromini, P. (Imperial Coll., London) ; Gkountoumis, P. (Brookhaven ; Natl. Tech. U., Athens ; CERN ; Michigan U.) ; Grayzman, I. (Weizmann Inst. ; Hebrew U.) ; Guan, L. (Michigan U.) ; da Costa, J. Guimaraes (Harvard U. (main)) ; Han, L. (Hefei, CUST) ; Hou, S. (Academia Sinica, Taiwan) ; Hu, X. (Michigan U.) ; Hu, K. (Hefei, CUST ; Shandong U.) ; Huth, J. (Imperial Coll., London) ; Ivanovici, M. (Transilvania U., Brasov) ; Jin, G. (Hefei, CUST) ; Johns, K. (Arizona U.) ; Kajomovitz, E. (Technion) ; Kehris, G. (Imperial Coll., London) ; Kiskiras, I. (Democritos Nucl. Res. Ctr.) ; Koulouris, A. (Brookhaven ; Natl. Tech. U., Athens ; CERN) ; Kyriakis, E. (Unlisted, IN) ; Lankford, A. (UC, Irvine) ; Lee, L. (Imperial Coll., London ; Oak Ridge ; Tennessee U.) ; Leung, H. (Hong Kong, Chinese U.) ; Li, F. (Hefei, CUST) ; Liang, Y. (Michigan U.) ; Lu, H. (Hefei, CUST) ; Lupu, N. (Technion) ; Martinez, V. (Massachusetts U., Amherst) ; Martoiu, S. (Bucharest, IFIN-HH) ; Matakias, D. (Brookhaven ; Natl. Tech. U., Athens) ; Mehalev, I. (Technion) ; Mesolongitis, I. (Brookhaven ; Unlisted, IN) ; Miao, P. (Hefei, CUST) ; Mikenberg, G. (Weizmann Inst.) ; Moleri, L. (Technion ; Weizmann Inst.) ; Moschovakos, P. (Brookhaven ; Natl. Tech. U., Athens ; CERN) ; Narevicius, J. (Weizmann Inst. ; Dortmund U.) ; Oliver, J. (Imperial Coll., London) ; Pietreanu, D. (Bucharest, IFIN-HH) ; Pinkham, R. (Michigan U. ; Unlisted, US, CA) ; Politis, E. (Unlisted, IN) ; Polychronakos, V. (Brookhaven) ; Popa, S. (Transilvania U., Brasov) ; Prapa, M.M. (Democritos Nucl. Res. Ctr.) ; Ravinovich, I. (Weizmann Inst.) ; Roich, A. (Weizmann Inst.) ; Caballero, R.A. Rojas (Santa Maria U., Valparaiso ; Victoria U. ; Massachusetts U., Amherst) ; Rozen, Y. (Technion) ; Schernau, M. (UC, Irvine) ; Schwartz, T. (Michigan U.) ; Scott, G. (Arizona U.) ; Shaked, O. (Weizmann Inst. ; Soreq Nucl. Res. Ctr.) ; Solis, M. (Arizona U.) ; Sun, S. (Michigan U.) ; Taffard, A. (UC, Irvine (main)) ; Tang, S. (Brookhaven) ; Tarem, Z. (Technion) ; Tse, W. (Hong Kong, Chinese U.) ; Tu, Y. (Hong Kong U.) ; Tuna, A. (Imperial Coll., London ; CERN) ; Tzanis, P. (Brookhaven ; Natl. Tech. U., Athens) ; Tzanos, S. (Brookhaven ; Natl. Tech. U., Athens) ; Vari, R. (Rome U.) ; Vasile, M. (Bucharest, IFIN-HH) ; Vdovin, A. (Technion) ; Vermeulen, J. (NIKHEF, Amsterdam) ; Wang, J. (Michigan U. ; Hefei, CUST) ; Wang, X. (Michigan U.) ; Wang, A. (Imperial Coll., London) ; Wang, R. (Harvard U.) ; Xiao, X. (Michigan U.) ; Yao, L. (Brookhaven ; Tsinghua U., Beijing) ; Yildiz, C. (UC, Irvine ; LPHE, Lausanne) ; Zachariadou, K. (Unlisted, IN) ; Zhou, B. (Michigan U.) ; Zhu, J. (Michigan U.) ; Zimmermann, S.U. (Freiburg U.) ; Zormpa, O. (CERN ; Democritos Nucl. Res. Ctr.)
Publication 2023-05-11
Imprint 2023-03-22
Number of pages 65
In: JINST 18 (2023) P05012
DOI 10.1088/1748-0221/18/05/P05012 (publication)
Subject category physics.ins-det ; Detectors and Experimental Techniques ; hep-ex ; Particle Physics - Experiment
Abstract The increase in luminosity, and consequent higher backgrounds, of the LHC upgrades require improved rejection of fake tracks in the forward region of the ATLAS Muon Spectrometer. The New Small Wheel upgrade of the Muon Spectrometer aims to reduce the large background of fake triggers from track segments that are not originated from the interaction point. The New Small Wheel employs two detector technologies, the resistive strip Micromegas detectors and the "small" Thin Gap Chambers, with a total of 2.45 Million electrodes to be sensed. The two technologies require the design of a complex electronics system given that it consists of two different detector technologies and is required to provide both precision readout and a fast trigger. It will operate in a high background radiation region up to about 20 kHz/cm$^{2}$ at the expected HL-LHC luminosity of $\mathcal{L}$=7.5$\times10^{34}$cm$^{-2}$s$^{-1}$. The architecture of the system is strongly defined by the GBTx data aggregation ASIC, the newly-introduced FELIX data router and the software based data handler of the ATLAS detector. The electronics complex of this new detector was designed and developed in the last ten years and consists of multiple radiation tolerant Application Specific Integrated Circuits, multiple front-end boards, dense boards with FPGA's and purpose-built Trigger Processor boards within the ATCA standard. The New Small Wheel has been installed in 2021 and is undergoing integration within ATLAS for LHC Run 3. It should operate through the end of Run 4 (December 2032). In this manuscript, the overall design of the New Small Wheel electronics is presented.
Copyright/License preprint: (License: CC BY-NC-SA 4.0)
publication: © 2023-2024 CERN (License: CC BY 4.0)



Corresponding record in: Inspire


 レコード 生成: 2023-03-25, 最終変更: 2024-09-27


フルテキスト:
2303.12571 - Download fulltextPDF
Publication - Download fulltextPDF
document - Download fulltextPDF