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CERN Document Server 77 elementer funnet  1 - 10nesteslutt  gå til element: Søket tok 0.65 sekunder. 
1.
Characterization of timing and spacial resolution of novel TI-LGAD structures before and after irradiation / Senger, Matias (University of Zurich (CH)) ; Borghi, Giacomo (FBK - Fondazione Bruno Kessler (IT)) ; Boscardin, Maurizio (Universita degli Studi di Trento and INFN (IT)) ; Centis Vignali, Matteo (FBK - Fondazione Bruno Kessler (IT)) ; Kilminster, Ben (University of Zurich (CH)) ; Macchiolo, Anna (University of Zurich (CH)) ; Paternoster, Giovanni (FBK - Fondazione Bruno Kessler (IT)) ; Bisht, A (FBK) ; Ficorella, F (FBK) ; Hammad Ali, O (FBK)
The characterization of spacial and timing resolution of the novel Trench Isolated LGAD (TI-LGAD) technology is presented. This technology has been developed at FBK with the goal of achieving 4D pixels, where an accurate position resolution is combined in a single device with the precise timing determination for Minimum Ionizing Particles (MIPs). [...]
AIDAinnova-CONF-2023-002.- Geneva : CERN, 2022 - Published in : 10.1016/j.nima.2022.167030
2.
Beam test results of 25 and 35 $\mu$m thick FBK ultra-fast silicon detectors / Carnesecchi, F. (CERN) ; Strazzi, S. (U. Bologna, DIFA) ; Alici, A. (U. Bologna, DIFA) ; Arcidiacono, R. (INFN, Turin ; Piemonte Orientale U., Alessandria) ; Borghi, G. (Fond. Bruno Kessler, Trento ; TIFPA-INFN, Trento) ; Boscardin, M. (Fond. Bruno Kessler, Trento ; TIFPA-INFN, Trento) ; Cartiglia, N. (INFN, Turin) ; Centis Vignali, M. (Fond. Bruno Kessler, Trento ; TIFPA-INFN, Trento) ; Cavazza, D. (INFN, Bologna) ; Dalla Betta, G. -F. (U. Trento (main) ; TIFPA-INFN, Trento) et al.
This paper presents the measurements on first very thin Ultra Fast Silicon Detectors (UFSDs) produced by Fondazione Bruno Kessler; the data have been collected in a beam test setup at the CERN PS, using beam with a momentum of 12 GeV/c. UFSDs with a nominal thickness of 25 $\mu$m and 35 $\mu$m and an area of 1 $\times$ 1 $\text{mm}^2$ have been considered, together with an additional HPK 50-$\mu$m thick sensor, taken as reference. [...]
arXiv:2208.05717.- 2023-01-30 - 11 p. - Published in : Eur. Phys. J. Plus 138 (2023) 99 Fulltext: 2208.05717 - PDF; document - PDF;
3.
LPNHE-FBK Thin n-on-p Pixel Sensors for HL-LHC Upgrade and Beyond / Calderini, G (Paris U., VI-VII) ; Bomben, M (Paris U., VI-VII) ; Boscardin, M (Fond. Bruno Kessler, Povo) ; Bosisio, L (INFN, Trieste ; Trieste U.) ; Borghi, G (Fond. Bruno Kessler, Povo) ; Camacho, R (Paris U., VI-VII) ; Crescioli, F (Paris U., VI-VII) ; Betta, G F Dalla (Trento U. ; INFN, Trento) ; Ficorella, F (Fond. Bruno Kessler, Povo) ; Giacomini, G (Brookhaven) et al.
In view of the LHC upgrade phase towards the High Luminosity LHC (HL-LHC), the ATLAS experiment plans to upgrade the Inner Detector with an all-silicon system. The n-on-p silicon technology is a promising candidate to achieve a large area instrumented with pixel sensors, since it is radiation hard and cost effective. [...]
2021 - 7 p. - Published in : JPS Conf. Proc. 34 (2021) 010021 Fulltext: PDF;
In : 29th International Workshop on Vertex Detectors, Virtual, Japan, 5 - 8 Oct 2020, pp.010021
4.
First demonstration of 200, 100, and 50 um pitch Resistive AC-Coupled Silicon Detectors (RSD) with 100% fill-factor for 4D particle tracking / Mandurrino, M. (INFN, Turin) ; Arcidiacono, R. (INFN, Turin ; CERN ; Piemonte Orientale U., Novara) ; Boscardin, M. (Fond. Bruno Kessler, Trento ; TIFPA-INFN, Trento) ; Cartiglia, N. (INFN, Turin) ; Dalla Betta, G.F. (INFN, Trento ; TIFPA-INFN, Trento ; Trento U.) ; Ferrero, M. (INFN, Turin ; Turin U.) ; Ficorella, F. (Fond. Bruno Kessler, Trento ; TIFPA-INFN, Trento) ; Pancheri, L. (INFN, Trento ; TIFPA-INFN, Trento ; Trento U.) ; Paternoster, G. (Fond. Bruno Kessler, Trento ; TIFPA-INFN, Trento) ; Siviero, F. (INFN, Turin ; Turin U.) et al.
We designed, produced, and tested RSD (Resistive AC-Coupled Silicon Detectors) devices, an evolution of the standard LGAD (Low-Gain Avalanche Diode) technology where a resistive n-type implant and a coupling dielectric layer have been implemented. The first feature works as a resistive sheet, freezing the multiplied charges, while the second one acts as a capacitive coupling for readout pads. [...]
arXiv:1907.03314.- 2019-09-23 - 4 p. - Published in : IEEE Electron. Dev. Lett. 40 (2019) 1780 Fulltext: PDF;
5.
Test beam characterization of irradiated 3D pixel sensors / Garcia Alonso, Andrea (Cantabria Inst. of Phys.) ; Curras Rivera, Esteban (Cantabria Inst. of Phys.) ; Duarte Campderros, Jordi (Cantabria Inst. of Phys.) ; Fernandez Garcia, Marcos (Cantabria Inst. of Phys.) ; Gomez, Gervasio (Cantabria Inst. of Phys.) ; Gonzalez Sanchez, Javier (Cantabria Inst. of Phys.) ; Silva Jimenez, Esther (Strasbourg, IPHC) ; Vila Alvarez, Ivan (Cantabria Inst. of Phys.) ; Jaramillo Echeverria, Richard William (Cantabria Inst. of Phys.) ; Meschini, Marco (INFN, Florence) et al.
Due to the large expected instantaneous luminosity, the future HL-LHC upgrade sets strong requirements on the radiation hardness of the CMS detector Inner Tracker. Sensors based on 3D pixel technology, with its superior radiation tolerance, comply with these extreme conditions. [...]
CMS-CR-2019-161.- Geneva : CERN, 2019 - 12 p. Fulltext: PDF;
In : 21st International Workshop on Radiation Imaging Detectors, Kolympari, Chania, Greece, 7 - 12 Jul 2019
6.
Characterization of planar and 3D Silicon pixel sensors for the high luminosity phase of the CMS experiment at LHC / Ceccarelli, Rudy (INFN, Florence ; Florence U.) ; Zuolo, Davide (INFN, Milan Bicocca ; Milan Bicocca U.) ; Meschini, Marco (INFN, Florence) ; Viliani, Lorenzo (Florence U. ; INFN, Florence) ; Dinardo, Mauro (INFN, Milan Bicocca ; Milan Bicocca U.) ; Gennai, Simone (CERN ; INFN, Pisa) ; Menasce, Dario (INFN, Milan Bicocca) ; Moroni, Luigi (INFN, Milan Bicocca ; Milan Bicocca U.) ; Demaria, Lino (INFN, Turin) ; Monteil, Ennio (INFN, Turin ; Turin U.) et al.
The High Luminosity upgrade of the CERN LHC collider (HL-LHC) demands for a new, high-radiation tolerant solid-state pixel sensor capable of surviving fluencies up to a few $10^{16}~ \rm{n_{eq}/cm^2}$ at $\sim 3 \, \rm{cm} $ from the interaction point. To this extent the INFN ATLAS-CMS joint research activity, in collaboration with Fondazione Bruno Kessler (FBK), is aiming at the development of thin n-in-p type pixel sensors for the HL-LHC [...]
CMS-CR-2019-169.- Geneva : SISSA, 2020 - 6 p. - Published in : PoS EPS-HEP2019 (2020) 117 Fulltext: CR2019_169 - PDF; EPS-HEP2019_117 - PDF;
In : European Physical Society Conference on High Energy Physics (EPS-HEP) 2019, Ghent, Belgium, 10 - 17 Jul 2019, pp.117
7.
Performances of highly irradiated 3D and planar pixel sensors interconnected to the RD53A readout chip / Ceccarelli, Rudy (INFN, Florence ; Florence U.) ; Cassese, Antonio (INFN, Florence) ; Meschini, Marco (INFN, Florence) ; Viliani, Lorenzo (INFN, Florence) ; Dinardo, Mauro (INFN, Milan Bicocca ; Milan Bicocca U.) ; Gennai, Simone (INFN, Milan Bicocca) ; Moroni, Luigi (INFN, Milan Bicocca) ; Zuolo, Davide (INFN, Milan Bicocca ; Milan Bicocca U.) ; Messineo, Alberto (INFN, Pisa ; Pisa U.) ; Dalla Betta, G.F (TIFPA-INFN ; Trento U.) et al. /CMS Tracker Group
The High Luminosity upgrade of the CERN Large Hadron Collider (HL-LHC) calls for new highly radiation tolerant silicon pixel sensors, capable of withstanding fluences up to $2.3 \times 10^{16} \, \mathrm{n_{eq}/cm^2}$ (1 MeV equivalent neutrons). In this paper results obtained in beam test experiments with 3D and planar pixel sensors interconnected with the RD53A readout chip are reported. [...]
CMS-CR-2019-307.- Geneva : CERN, 2020 - 11 p. - Published in : JINST 15 (2020) C02016 Fulltext: PDF;
In : 15th Topical Seminar on Innovative Particle and Radiation Detectors (IPRD 2019), Siena, Italy, 14 - 17 Oct 2019, pp.C02016
8.
First Production of 50-µm-thick Resistive AC-Coupled Silicon Detectors (RSD) at FBK / Mandurrino, M (INFN, Turin) ; Arcidiacono, R (CERN) ; Boscardin, M (Fond. Bruno Kessler, Trento) ; Cartiglia, N (INFN, Turin) ; Dalla Betta, G F (Trento U.) ; Ferrero, M (Piemonte Orientale U., Novara) ; Ficorella, F (Fond. Bruno Kessler, Trento) ; Pancheri, L (Trento U.) ; Paternoster, G (Fond. Bruno Kessler, Trento) ; Siviero, F (INFN, Turin) et al.
Resistive AC-Coupled Silicon Detectors (RSD) represent a new frontier in 4D particle tracking through silicon detectors with intrinsic gain. In this work we present the experimental characterization done on the first run of sensors, RSD1, produced at Fondazione Bruno Kessler (FBK) in Trento, Italy..
IEEE, 2019 - 3 p. - Published in : 10.1109/NSS/MIC42101.2019.9060007
In : 2019 IEEE Nuclear Science Symposium (NSS) and Medical Imaging Conference (MIC), Manchester, United Kingdom, 26 Oct - 2 Nov 2019, pp.1-3
9.
R&D; for new silicon pixel sensors for the High Luminosity phase of the CMS experiment at LHC / Zuolo, D (Milan Bicocca U. ; INFN, Milan Bicocca) ; Dinardo, M E (Milan Bicocca U. ; INFN, Milan Bicocca) ; Moroni, L (Milan Bicocca U. ; INFN, Milan Bicocca) ; Menasce, D (INFN, Milan Bicocca) ; Meschini, M (Florence U. ; INFN, Florence) ; Viliani, L (Florence U. ; INFN, Florence) ; Zoi, I (Hamburg U.) ; Darbo, G (Genoa U.) ; Messineo, A (INFN, Pisa ; Pisa U.) ; Dell'Orso, R (INFN, Pisa ; Pisa U.) et al.
The High Luminosity upgrade of the CERN LHC collider (HL-LHC) demands a new high-radiation–tolerant solid-state pixel sensor capable of surviving fluencies up to a few 10$^{16} n_{eq}/\mathrm{cm}^2$ at ∼ 3 cm from the interaction point. To this extent the INFN ATLAS-CMS joint research activity, in collaboration with Fondazione Bruno Kessler (FBK), is aiming at the development of thin $n$-in-$p$–type pixel sensors for the HL-LHC [...]
Italian Physical Society, 2019 - 4 p. - Published in : Nuovo Cimento C 42 (2019) 185 Published fulltext: PDF;
In : 17th Incontri di Fisica delle Alte Energie, Milan, Italy, 04 - 06 Apr 2018, pp.185
10.
State-of-the-art and evolution of UFSD sensors design at FBK / Arcidiacono, R. (INFN Torino, Universita del Piemonte Orientale) ; Ferrero, M. (INFN Torino, Universita del Piemonte Orientale) ; Cartiglia, N. INFN Torino ; Costa, M. (INFN Torino) ; Fausti, F. (INFN Torino) ; Mandurrino, M. (INFN Torino) ; Olave, J. (INFN Torino) ; Siviero, F. (INFN Torino) ; Sola, V. (INFN Torino) ; Staiano, A. (INFN Torino) et al.
AIDA-2020-SLIDE-2020-020.- Geneva : CERN, 2020 Fulltext: PDF;

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