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1.
The LiTE-DTU: A Data Conversion and Compression ASIC for the Readout of the CMS Electromagnetic Calorimeter / Mazza, Giovanni (Turin U. ; INFN, Turin) ; Argirò, Stefano (Turin U. ; INFN, Turin) ; Borca, Cecilia (Turin U. ; INFN, Turin) ; Cometti, Simona (Turin U. ; INFN, Turin ; Polytech. Turin) ; Cossio, Fabio (Turin U. ; INFN, Turin) ; Dejardin, Marc (IRFU, Saclay) ; Dellacasa, Giulio (Turin U. ; INFN, Turin) ; Mignone, Marco (Turin U. ; INFN, Turin) ; Pastrone, Nadia (Turin U. ; INFN, Turin) ; Soldi, Dario (Turin U. ; INFN, Turin) et al.
The high-luminosity phase of operation of the CERN Large Hadron Collider (HL-LHC) will pose new challenges to the detectors and their readout electronics. In particular, the Compact Muon Solenoid (CMS) barrel electromagnetic calorimeter will require a full redesign of the electronic readout chain in order to cope with the increase in luminosity and trigger rate. [...]
2023 - 8 p. - Published in : IEEE Trans. Nucl. Sci. 70 (2023) 1215-1222
In : 23rd IEEE Real Time Conference (RT2022), Online, 1 - 5 Aug 2022, pp.1215-1222
2.
A radiation tolerant 12 bit, 160 MS/s data conversion and transmission ASIC for the CMS electromagnetic calorimeter / Mazza, G (INFN, Turin) ; Argirò, S (INFN, Turin ; Turin U.) ; Dellacasa, G (INFN, Turin) ; Mignone, M (INFN, Turin) ; Soldi, D (INFN, Turin ; Turin U.) ; Varela, J (LIP, Lisbon) ; Wheadon, R (INFN, Turin) /CMS Collaboration
The readout electronics for the CMS electromagnetic calorimeter is undergoing a re-design in order to cope with the LHC ugrade. In particular, a fourfold increase in the sampling frequency (from 40 to 160 MS/s) is required. [...]
2022 - 6 p. - Published in : JINST

In : TWEPP 2021 Topical Workshop on Electronics for Particle Physics, Online, Online, 20 - 24 Sep 2021, pp.C04028
3.
New ASICs for the Very Front-End Card Upgrade of the CMS ECAL Barrel at the HL-LHC / Cometti, Simona (CERN ; INFN, Turin ; Turin U.) ; Mazza, Giovanni (INFN, Turin) /CMS Collaboration
The High Luminosity LHC (HL-LHC), the foreseen LHC upgrade, will entail higher levels of instantaneous luminosity by about a factor of 5 from current levels.The electromagnetic calorimeter (ECAL) of the Compact Muon Solenoid detector (CMS) will experience a challenging environment during the HL-LHC phase. As a matter of fact higher event pileup, increasing data rates and harsher radiation environment are some of the expected conditions.A complete redesign of the ECAL on-detector readout electronics have been performed in order to obtain precision timing, noise mitigation and increased sampling rate. [...]
2019 - 4 p. - Published in : 10.1109/PRIME.2019.8787778
In : 15th Conference on PhD Research in Microelectronics and Electronics, Lausanne, Switzerland, 15 - 18 Jul 2019, pp.37-40
4.
First results on monolithic CMOS detector with internal gain / Follo, U. (INFN, Turin ; Turin Polytechnic) ; Gioachin, G. (INFN, Turin ; Polytech. Turin) ; Ferrero, C. (INFN, Turin ; Turin Polytechnic) ; Mandurrino, M. (INFN, Turin) ; Bregant, M. (Sao Paulo U.) ; Bufalino, S. (INFN, Turin ; Polytech. Turin) ; Carnesecchi, F. (CERN) ; Cavazza, D. (INFN, Bologna) ; Colocci, M. (INFN, Bologna ; Bologna U.) ; Corradino, T. (Trento U. ; INFN, Trento) et al.
In this paper we report on a set of characterisations carried out on the first monolithic LGAD prototype integrated in a customised 110 nm CMOS process having a depleted active volume thickness of 48 $\mu$m. This prototype is formed by a pixel array where each pixel has a total size of 100 $\mu$m $\times$ 250 $\mu$m and includes a high-speed front-end amplifier. [...]
arXiv:2406.19906.- 2024-07-29 - 18 p. - Published in : JINST 19 (2024) P07033 Fulltext: 2406.19906 - PDF; Publication - PDF;
5.
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;
6.
Test beam results with prototypes for the new Cylindrical GEM Inner Tracker of the BESIII experiment / CGEM-IT Collaboration
A cylindrical GEM tracker is under construction in order to replace and improve the inner tracking system of the BESIII experiment. Tests with planar chamber prototypes were carried out on the H4 beam line of SPS (CERN) with muons of 150 GeV/c momentum, to evaluate the efficiency and resolution under different working conditions. [...]
arXiv:1803.07263.- 2018-01 - 4 p. - Published in : Nuovo Cimento C 41 (2018) 78 Fulltext: ncc11520 - PDF; fulltext1663308 - PDF; 1803.07263 - PDF;
In : 16th Incontri di Fisica delle Alte Energie, Trieste, Italy, 19 - 21 Apr 2017, pp.78
7.
Test beam results of a Cylindrical GEM detector for the BESIII experiment / Mezzadri, Giulio (INFN, Ferrara ; Ferrara U.) ; Alexeev, Maxim (INFN, Turin) ; Amoroso, Antonio (INFN, Turin ; Turin U.) ; Baldini Ferroli, Rinaldo (Beijing, Inst. High Energy Phys. ; Frascati) ; Bertani, Monica (Frascati) ; Bettoni, Diego (INFN, Ferrara) ; Bianchi, Fabrizio (INFN, Turin ; Turin U.) ; Calcaterra, Alessandro (Frascati) ; Canale, Nicola (INFN, Ferrara) ; Capodiferro, Manlio (Frascati ; INFN, Rome) et al.
Gas detector are very light instrument used in high energy physics to measure the particle properties: position and momentum. Through high electric field is possible to use the Gas Electron Multiplier (GEM) technology to detect the charged particles and to exploit their properties to construct a large area detector, such as the new IT for BESIII. [...]
arXiv:1803.07489.- SISSA, 2019 - 8 p. - Published in : PoS MPGD2017 (2019) 048 Fulltext: 1803.07489 - PDF; PoS(MPGD2017)048 - PDF;
In : 5th International Conference on Micro-Pattern Gas Detectors, Philadelphia, Pennsylvania, Pa, Usa, 22 - 26 May 2017, pp.048
8.
Study of hard and electromagnetic processes at CERN-SPS energies: an investigation of the high-$\mu_{\mathbf{B}}$ region of the QCD phase diagram with NA60+ / NA60+ Collaboration
The exploration of the phase diagram of Quantum ChromoDynamics (QCD) is carried out by studying ultrarelativistic heavy-ion collisions. The energy range covered by the CERN SPS ($\sqrt{s_{\rm \scriptscriptstyle{NN}}} \sim$ 6-17 GeV) is ideal for the investigation of the region of the phase diagram corresponding to finite baryochemical potential ($\mu_{\rm B}$), and has been little explored up to now. [...]
arXiv:1812.07948.- 2021 - 8 p. - Published in : JPS Conf. Proc. 33 (2021) 011113 Fulltext: 1812.07948 - PDF; fulltext1709998 - PDF; Fulltext forom publisher: PDF;
In : J-PARC Symposium 2019, Tsukuba, Japan, 23 - 26 Sep 2019, pp.011113
9.
Letter of Intent: the NA60+ experiment / NA60+ Collaboration
We propose a new fixed-target experiment for the study of electromagnetic and hard probes of the Quark-Gluon Plasma (QGP) in heavy-ion collisions at the CERN SPS. [...]
arXiv:2212.14452 ; CERN-SPSC-2022-036 / SPSC-I-259.
- 101 p.
Fulltext
10.
A Cylindrical GEM Inner Tracker for the BESIII experiment at IHEP / Farinelli, R. (INFN, Ferrara ; Ferrara U.) ; Alexeev, M. (INFN, Turin) ; Amoroso, A. (INFN, Turin) ; Bianchi, F. (INFN, Turin) ; Bertani, M. (INFN, Rome) ; Bettoni, D. (INFN, Ferrara) ; Canale, N. (INFN, Ferrara ; Ferrara U.) ; Calcaterra, A. (INFN, Rome) ; Carassiti, V. (INFN, Ferrara) ; Cerioni, S. (INFN, Rome) et al.
The Beijing Electron Spectrometer III (BESIII) is a multipurpose detector that collects data provided by the collision in the Beijing Electron Positron Collider II (BEPCII), hosted at the Institute of High Energy Physics of Beijing. [...]
arXiv:1807.00500.
- 2018.
Fulltext

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