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CERN Document Server 8 záznamov nájdených  Hľadanie trvalo 0.67 sekúnd. 
1.
Monolithic Picosecond Silicon Pixel Sensors for Future Physics: Experiments and Applications / Iacobucci, Giuseppe (U. Geneva (main)) ; Paolozzi, Lorenzo (U. Geneva (main)) ; Valerio, Pierpaolo (CERN)
Particle-physics, space research and several other fields of basic and applied science necessitate the production of large area detectors made by a new generation of thin sensors able to provide, at the same time, excellent position and time resolution. In the case of high-energy physics experiments, for example, with the advent of the very large number of collisions per bunch crossing foreseen at the High-Luminosity Large Hadron Collider (HL-LHC) (HL-LHC) and at the future Future Circular Collider (FCC), the density of particles close to the interaction point due to the pileup of events will be so high that efficient pattern-recognition and track-reconstruction will not be possible without precise timing information. At the HL-LHC, 4D event reconstruction will be achieved by two different detectors, specialised either in space or in time measurement. [...]
2021 - 7 p. - Published in : IEEE Instrum. Measur. Mag. 24 (2021) 5-11
2.
Measurements and analysis of different front-end configurations for monolithic SiGe BiCMOS pixel detectors for HEP applications / Martinelli, Fulvio (CERN ; Ecole Polytechnique, Lausanne) ; Magliocca, Chiara (Geneva U.) ; Cardella, Roberto (Geneva U.) ; Charbon, Edoardo (Ecole Polytechnique, Lausanne) ; Iacobucci, Giuseppe (Geneva U.) ; Nessi, Marzio (Geneva U. ; CERN) ; Paolozzi, Lorenzo (Geneva U. ; CERN) ; Rücker, Holger (IHP, Frankfurt) ; Valerio, Pierpaolo (Geneva U.)
This paper presents a small-area monolithic pixel detector ASIC designed in 130 nm SiGe BiCMOS technology for the upgrade of the pre-shower detector of the FASER experiment at CERN. The purpose of this prototype is to study the integration of fast front-end electronics inside the sensitive area of the pixels and to identify the configuration that could satisfy at best the specifications of the experiment. [...]
arXiv:2111.11184.- 2021-12-22 - 20 p. - Published in : JINST 16 (2021) P12038 Fulltext: 2111.11184 - PDF; document - PDF;
3.
A massively scalable Time-to-Digital Converter with a PLL-free calibration system in a commercial 130 nm process / Martinelli, Fulvio (CERN ; Ecole Polytechnique, Lausanne) ; Valerio, Pierpaolo (Geneva U.) ; Cardarelli, Roberto (INFN, Rome2) ; Charbon, Edoardo (Ecole Polytechnique, Lausanne) ; Iacobucci, Giuseppe (Geneva U.) ; Nessi, Marzio (CERN) ; Paolozzi, Lorenzo (CERN ; Geneva U.)
A 33.6 ps LSB Time-to-Digital converter was designed in 130 nm BiCMOS technology. The core of the converter is a differential 9-stage ring oscillator, based on a multi-path architecture. [...]
arXiv:2107.10162.- 2021-11-17 - 22 p. - Published in : JINST 16 (2021) P11023 Fulltext: 2107.10162 - PDF; document - PDF;
4.
A monolithic ASIC demonstrator for the Thin Time-of-Flight PET scanner / Valerio, Pierpaolo (Geneva U.) ; Cardarelli, Roberto (INFN, Rome2) ; Iacobucci, Giuseppe (Geneva U.) ; Paolozzi, Lorenzo (Geneva U.) ; Ripiccini, Emanuele (Geneva U.) ; Hayakawa, Daiki (Geneva U.) ; Bruno, Salvatore (Rome U., Tor Vergata) ; Caltabiano, Alessandro (INFN, Rome2) ; Kaynak, Mehmet (IHP, Frankfurt) ; Rueker, Holger (IHP, Frankfurt) et al.
Time-of-flight measurement is an important advancement in PET scanners to improve image reconstruction with a lower delivered radiation dose. This article describes the monolithic ASIC for the TT-PET project, a novel idea for a high-precision PET scanner for small animals. [...]
arXiv:1811.10246.- 2019-07-16 - 11 p. - Published in : JINST 14 (2019) P07013 Fulltext: 1811.10246 - PDF; fulltext1705041 - PDF; Fulltext from Publisher: PDF;
5.
Characterization of the demonstrator of the fast silicon monolithic ASIC for the TT-PET project / Paolozzi, Lorenzo (U. Geneva (main)) ; Bandi, Yves (Bern U.) ; Cardarelli, Roberto (INFN, Rome) ; Debieux, Stephane (U. Geneva (main)) ; Favre, Yannick (U. Geneva (main)) ; Ferrere, Didier (U. Geneva (main)) ; Forshaw, Dean (Bern U.) ; Hayakawa, Daiki (U. Geneva (main)) ; Iacobucci, Giuseppe (U. Geneva (main)) ; Kaynak, Mehmet (IHP, Frankfurt) et al.
The TT-PET collaboration is developing a small animal TOF-PET scanner based on monolithic silicon pixel sensors in SiGe BiCMOS technology. The demonstrator chip, a small-scale version of the final detector ASIC, consists of a 3 x 10 pixel matrix integrated with the front-end, a 50 ps binning TDC and read out logic. [...]
arXiv:1811.11114.- 2019-02-11 - 12 p. - Published in : JINST 14 (2019) P02009 Fulltext: 1811.11114 - PDF; fulltext1705474 - PDF; Fulltext from Publisher: PDF;
6.
65 nm Technology for HEP: Status and Perspective / Valerio, Pierpaolo (CERN) /RD53
SISSA, 2015 - Published in : PoS Vertex2014 (2015) 043 Fulltext: PDF; External link: Published version from PoS
In : 23rd International Workshop on Vertex Detectors, Doksy, Czech Republic, 15 - 19 Sep 2014, pp.043
7.
Capacitively coupled hybrid pixel assemblies for the CLIC vertex detector / Alipour Tehrani, Niloufar (CERN) ; Arfaoui, Samir (CERN) ; Benoit, Mathieu (CERN ; Geneva U.) ; Dannheim, Dominik (CERN) ; Dette, Karola (Tech. U., Dortmund (main)) ; Hynds, Daniel (CERN) ; Kulis, Szymon (CERN) ; Peric, Ivan (KIT, Karlsruhe) ; Petric, Marko (CERN) ; Redford, Sophie (CERN) et al.
The vertex detector at the proposed CLIC multi-TeV linear e+e- collider must have minimal material content and high spatial resolution, combined with accurate time-stamping to cope with the expected high rate of beam-induced backgrounds. One of the options being considered is the use of active sensors implemented in a commercial high-voltage CMOS process, capacitively coupled to hybrid pixel ASICs. [...]
CLICdp-Pub-2015-003.- Geneva : CERN, 2016 - 12. - Published in : Nucl. Instrum. Methods Phys. Res., A 823 (2016) 1-8 Elsevier Open Access article: PDF; Fulltext: PDF;
8.
Electronic Systems for Radiation Detection in Space and High Energy Physics Applications / Valerio, Pierpaolo
This Ph.D [...]
CERN-THESIS-2013-156 - 125 p.

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