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1.
A Compact Front-End Circuit for a Monolithic Sensor in a 65-nm CMOS Imaging Technology / Piro, F (CERN ; Ecole Polytechnique, Lausanne) ; Rinella, G Aglieri (CERN) ; Andronic, A (U. Munster) ; Antonelli, M (INFN, Trieste) ; Aresti, M (Cagliari U. ; INFN, Cagliari) ; Baccomi, R (INFN, Trieste) ; Becht, P (Heidelberg U.) ; Beolè, S (Turin U. ; INFN, Turin) ; Braach, J (CERN) ; Buckland, M D (INFN, Trieste ; Trieste U.) et al.
This article presents the design of a front-end circuit for monolithic active pixel sensors (MAPSs). The circuit operates with a sensor featuring a small, low-capacitance (< 2 fF) collection electrode and is integrated into the DPTS chip, a proof-of-principle prototype of 1.5×1.5 mm including a matrix of 32×32 pixels with a pitch of 15μm . [...]
2023 - 10 p. - Published in : IEEE Trans. Nucl. Sci. 70 (2023) 2191-2200 Fulltext: PDF;
2.
Digital Pixel Test Structures implemented in a 65 nm CMOS process / Rinella, Gianluca Aglieri (CERN) ; Andronic, Anton (Munster U.) ; Antonelli, Matias (INFN, Trieste ; Trieste U.) ; Aresti, Mauro (Cagliari U. ; INFN, Cagliari) ; Baccomi, Roberto (INFN, Trieste ; Trieste U.) ; Becht, Pascal (U. Heidelberg (main)) ; Beole, Stefania (Turin U. ; INFN, Turin) ; Braach, Justus (CERN ; Hamburg U.) ; Buckland, Matthew Daniel (INFN, Trieste ; Trieste U.) ; Buschmann, Eric (CERN) et al.
The ALICE ITS3 (Inner Tracking System 3) upgrade project and the CERN EP R&D; on monolithic pixel sensors are investigating the feasibility of the Tower Partners Semiconductor Co. 65 nm process for use in the next generation of vertex detectors. [...]
arXiv:2212.08621.- 2023-08-04 - 13 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1056 (2023) 168589 Fulltext: 2212.08621 - PDF; Publication - PDF;
3.
First demonstration of in-beam performance of bent Monolithic Active Pixel Sensors / ALICE ITS project Collaboration
A novel approach for designing the next generation of vertex detectors foresees to employ wafer-scale sensors that can be bent to truly cylindrical geometries after thinning them to thicknesses of 20-40$\mu$m. To solidify this concept, the feasibility of operating bent MAPS was demonstrated using 1.5$\times$3cm ALPIDE chips. [...]
arXiv:2105.13000.- 2022-04-01 - 14 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1028 (2022) 166280 Fulltext: PDF;
4.
Time performance of Analog Pixel Test Structures with in-chip operational amplifier implemented in 65 nm CMOS imaging process / Rinella, Gianluca Aglieri (CERN) ; Aglietta, Luca (INFN, Turin ; Turin U.) ; Antonelli, Matias (INFN, Trieste) ; Barile, Francesco (INFN, Bari ; Bari U.) ; Benotto, Franco (INFN, Turin) ; Beolè, Stefania Maria (INFN, Turin ; Turin U.) ; Botta, Elena (INFN, Turin ; Turin U.) ; Bruno, Giuseppe Eugenio (Bari Polytechnic ; INFN, Bari) ; Carnesecchi, Francesca (CERN) ; Colella, Domenico (INFN, Bari ; Bari U.) et al.
In the context of the CERN EP R&D; on monolithic sensors and the ALICE ITS3 upgrade, the Tower Partners Semiconductor Co (TPSCo) 65 nm process has been qualified for use in high energy physics, and adopted for the ALICE ITS3 upgrade. An Analog Pixel Test Structure (APTS) featuring fast per pixel operational-amplifier-based buffering for a small matrix of four by four pixels, with a sensor with a small collection electrode and a very non-uniform electric field, was designed to allow detailed characterization of the pixel performance in this technology. [...]
arXiv:2407.18528.- 2024-11-12 - 27 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1070 (2025) 170034 Fulltext: PDF;
5.
Observation of collider neutrinos without final state muons with the SND@LHC experiment / Abbaneo, D. (CERN) ; Ahmad, S. (PINSTECH, Islamabad) ; Albanese, R. (INFN, Naples ; Naples U.) ; Alexandrov, A. (INFN, Naples ; Naples U.) ; Alicante, F. (INFN, Naples ; Naples U.) ; Androsov, K. (Ecole Polytechnique, Lausanne) ; Anokhina, A. ; Asada, T. (INFN, Naples ; Naples U.) ; Asawatangtrakuldee, C. (Chulalongkorn U.) ; Ayala Torres, M.A. (Andres Bello Natl. U.) et al. /SND@LHC
We report the observation of neutrino interactions without final state muons at the LHC, with a significance of 6.4\,$\sigma$. A data set of proton-proton collisions at $\sqrt{s}= 13.6$\,TeV collected by \SND in 2022 and 2023 is used, corresponding to an integrated luminosity of 68.6\,fb$^{-1}$. [...]
arXiv:2411.18787; CERN-EP-2024-316.- Geneva : CERN, 2024 - 7 p. Draft (restricted): PDF; Fulltext: Observation_of_electron_neutrino_or_neutral_current_collider_events - PDF; CERN-EP-2024-316 - PDF; 2411.18787 - PDF;
6.
Optimization of LYSO crystals and SiPM parameters for the CMS MIP timing detector / Addesa, F. (Princeton U.) ; Anderson, T. (Virginia U.) ; Barria, P. (INFN, Rome ; Rome U.) ; Basile, C. (INFN, Rome ; Rome U. ; U. Rome La Sapienza (main)) ; Benaglia, A. (INFN, Milan Bicocca) ; Bertoni, R. (INFN, Milan Bicocca) ; Bethani, A. (Maryland U.) ; Bianco, R. (INFN, Rome ; Rome U. ; CERN) ; Bornheim, A. (Caltech) ; Boldrini, G. (INFN, Milan Bicocca ; Milan Bicocca U.) et al.
For the High-Luminosity (HL-LHC) phase, the upgrade of the Compact Muon Solenoid (CMS) experiment at CERN will include a novel MIP Timing Detector (MTD). The central part of MTD, the barrel timing layer (BTL), is designed to provide a measurement of the time of arrival of charged particles with a precision of 30 ps at the beginning of HL-LHC, progressively degrading to 60 ps while operating in an extremely harsh radiation environment for over a decade. [...]
arXiv:2410.08738.- 2024-12-17 - 21 p. - Published in : JINST 19 (2024) P12020 Fulltext: 2410.08738 - PDF; document - PDF;
7.
High Intensity Kaon Experiments (HIKE) at the CERN SPS: Proposal for Phases 1 and 2 / HIKE Collaboration
A timely and long-term programme of kaon decay measurements at an unprecedented level of precision is presented, leveraging the capabilities of the CERN Super Proton Synchrotron (SPS). [...]
arXiv:2311.08231 ; CERN-SPSC-2023-031 ; SPSC-P-368.
- 2023. - 147 p.
Fulltext - Fulltext
8.
Assessment of the Čerenkov light produced in a PbWO4 crystal by means of the study of the time structure of the signal / Cavallini, L (U. Rome La Sapienza (main)) ; Mancini, C (U. Rome La Sapienza (main)) ; Mecca, A (U. Rome La Sapienza (main)) ; Pinci, D (U. Rome La Sapienza (main)) ; Akchurin, N (Texas Tech. U., Lubbock) ; Berntzon, L (Texas Tech. U., Lubbock) ; Kim, H (Texas Tech. U., Lubbock) ; Roh, Y (Texas Tech. U., Lubbock) ; Wigmans, R (Texas Tech. U., Lubbock) ; Cardini, A (INFN, Cagliari) et al.
On beam tests were carried out on PbWO4 crystals. One of the aims of this work was to evaluate the contribution of the Čerenkov component to the total light yield. [...]
2008 - 5 p. - Published in : 10.1142/9789812819093_0063
In : 10th ICATPP Conference on Astroparticle, Particle, Space Physics, Detectors and Medical Physics Applications, Villa Olmo, Como, Italy, 8 - 12 Oct 2007, pp.359-363
9.
FPGA-based real-time data processing for accelerating reconstruction at LHCb / LHCb Collaboration
In Run-3, beginning in 2022, the LHCb software trigger will start reconstructing events at the LHC average crossing rate of 30 MHz. Within the upgraded DAQ system, LHCb established a testbed for new heterogeneous computing solutions for real-time event reconstruction, in view of future runs at even higher luminosities. [...]
arXiv:2201.08119.- 2022-04-06 - 8 p.
- Published in : JINST Fulltext: PDF;
In : TWEPP 2021 Topical Workshop on Electronics for Particle Physics, Online, Online, 20 - 24 Sep 2021, pp.C04011
10.
Sensitivity of future liquid argon dark matter search experiments to core-collapse supernova neutrinos / DarkSide 20k Collaboration
Future liquid-argon DarkSide-20k and ARGO detectors, designed for direct dark matter search, will be sensitive also to core-collapse supernova neutrinos, via coherent elastic neutrino-nucleus scattering. This interaction channel is flavor-insensitive with a high-cross section, enabling for a high-statistics neutrino detection with target masses of $\sim$50~t and $\sim$360~t for DarkSide-20k and ARGO, respectively. [...]
arXiv:2011.07819.- 2021-03-15 - 22 p. - Published in : JCAP 2103 (2021) 043 Fulltext: 2011.07819 - PDF; fermilab-pub-20-601-nd-ppd - PDF; External link: Fermilab Library Server (fulltext available)

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