CERN Accelerating science

CERN Document Server Намерени са 7 записа  Търсенето отне 0.51 секунди. 
1.
High precision measurements of neutrino fluxes with ENUBET / Longhin, Andrea (INFN, Padua) ; Ballerini, Giovanni (Insubria U., Como ; INFN, Milan Bicocca) ; Berra, Alessandro (Insubria U., Como ; INFN, Milan Bicocca) ; Boanta, Remus (INFN, Milan Bicocca ; Milan Bicocca U.) ; Bonesini, Maurizio (INFN, Milan Bicocca) ; Brizzolari, Claudia (Insubria U., Como ; INFN, Milan Bicocca) ; Brunetti, Giulia (INFN, Padua) ; Calviani, Marco (CERN) ; Carturan, Sara (INFN, Legnaro ; Padua U.) ; Cecchini, Stefano (INFN, Bologna) et al.
Neutrino fluxes are currently affected by large normalization uncertainties (5-10%). Neutrino physics will require measurements of absolute neutrino cross sections at the GeV scale with exquisite (1%) precision in the near future. [...]
SISSA, 2018 - 12 p. - Published in : PoS NEUTEL2017 (2018) 050 Fulltext: PDF; External link: PoS server
In : 17th International Workshop on Neutrino Telescopes, Venice, Italy, 13 - 17 Mar 2017, pp.050
2.
Sub-100 ps coincidence time resolution for positron emission tomography with LSO:Ce codoped with Ca / Nemallapudi, Mythra Varun (CERN) ; Gundacker, Stefan (CERN) ; Lecoq, Paul (CERN) ; Auffray, Etiennette (CERN) ; Ferri, Alessandro (Fond. Bruno Kessler, Trento) ; Gola, Alberto (Fond. Bruno Kessler, Trento) ; Piemonte, Claudio (Fond. Bruno Kessler, Trento)
The coincidence time resolution (CTR) becomes a key parameter of 511keV gamma detection in time of flight positron emission tomography (TOF-PET). This is because additional information obtained through timing leads to a better noise suppression and therefore a better signal to noise ratio in the reconstructed image. [...]
2015 - 15 p. - Published in : Phys. Med. Biol. 60 (2015) 4635-4649
3.
RD50 Status Report 2008 - Radiation hard semiconductor devices for very high luminosity colliders / Balbuena, Juan Pablo (Barcelona, Inst. Microelectron.) ; Bassignana, Daniela (Barcelona, Inst. Microelectron.) ; Campabadal, Francesca (Barcelona, Inst. Microelectron.) ; Díez, Sergio (Barcelona, Inst. Microelectron.) ; Fleta, Celeste (Barcelona, Inst. Microelectron.) ; Lozano, Manuel (Barcelona, Inst. Microelectron.) ; Pellegrini, Giulio (Barcelona, Inst. Microelectron.) ; Rafí, Joan Marc (Barcelona, Inst. Microelectron.) ; Ullán, Miguel (Barcelona, Inst. Microelectron.) ; Creanza, Donato (Bari U. ; INFN, Bari) et al.
The objective of the CERN RD50 Collaboration is the development of radiation hard semiconductor detectors for very high luminosity colliders, particularly to face the requirements of a possible upgrade scenario of the LHC.This document reports the status of research and main results obtained after the sixth year of activity of the collaboration..
CERN-LHCC-2010-012 ; LHCC-SR-003.
- 2010. - 73 p.
Fulltext
4.
Characterization of 3D-DDTC detectors on p-type substrates / Dalla Betta, Gian-Franco (INFN, Padua ; Trento U.) ; Boscardin, Maurizio (ITC-IRST, Trento) ; Bosisio, Luciano (INFN, Trieste ; Trieste U.) ; Darbo, Giovanni (INFN, Genoa) ; Gabos, Paolo (INFN, Padua ; Trento U.) ; Gemme, Claudia (INFN, Genoa) ; Koehler, Michael (Freiburg U.) ; La Rosa, Alessandro (CERN) ; Parzefall, Ulrich (Freiburg U.) ; Pernegger, Heinz (CERN) et al.
We report on the electrical and functional characterization of 3D Double-side, Double-Type-Column (3D- DDTC) detectors fabricated on p-type substrates. Results relevant to detectors in the diode, strip and pixel configurations are presented, and demonstrate a clear improvement in the charge collection performance compared to the first prototypes of these detectors..
arXiv:0911.4864.- 2009 - 8 p. - Published in : (2009) , pp. 29-36
Fulltext: PDF; External link: Preprint
In : IEEE Nuclear Science Symposium And Medical Imaging Conference, Orlando, FL, USA, 25 Oct - 31 Oct 2009, pp.29-36
5.
Development of 3D-DDTC pixel detectors for the ATLAS upgrade / Dalla Betta, Gian-Franco (INFN, Padua ; ITC-IRST, Trento) ; Boscardin, Maurizio (Fond. Bruno Kessler, Povo) ; Darbo, Giovanni (INFN, Genoa) ; Gemme, Claudia (INFN, Genoa) ; La Rosa, Alessandro (CERN) ; Pernegger, Heinz (CERN) ; Piemonte, Claudio (ITC-IRST, Trento) ; Povoli, Marco (INFN, Padua ; ITC-IRST, Trento) ; Ronchin, Sabina (Fond. Bruno Kessler, Povo) ; Zoboli, Andrea (INFN, Padua ; ITC-IRST, Trento) et al.
We report on the development of n-on-p, 3D Double-Side Double Type Column (3D-DDTC) pixel detectors fabricated at FBK-irst (Trento, Italy) and oriented to the ATLAS upgrade. The considered fabrication technology is simpler than that required for full 3D detectors with active edge, but the detector efficiency and radiation hardness critically depend on the columnar electrode overlap and should be carefully evaluated. [...]
arXiv:0910.3629.- 2011 - 20 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 636 (2011) S15-S23 Fulltext: PDF; External link: Preprint
In : 7th International Symposium on the Development and Application of Semiconductor Tracking Detectors, Hiroshima, Japan, 29 Aug - 01 Sep 2009, pp.S15-S23
6.
Radiation hardness and charge collection efficiency of lithium irradiated thin silicon diodes / Boscardin, Maurizio ; Betta, G F D ; Bruzzi, Mara ; Candelori, Andrea ; Focardi, Ettore ; Khomenkov, Volodymyr P ; Piemonte, Claudio ; Ronchin, S ; Tosi, C ; Zorzi, N
Due to their low depletion voltage, even after high particle fluences, improved tracking precision and momentum resolution, and reduced material budget, thin substrates are one of the possible choices to provide radiation hard detectors for future high energy physics experiments. In the framework of the CERN RD50 Collaboration, we have developed PIN diode detectors on membranes obtained by locally thinning the silicon substrate by means of TMAH etching from the wafer backside. [...]
2005 - Published in : IEEE Trans. Nucl. Sci. 52 (2005) 1048-1053
7.
Fabrication of PIN diode detectors on thinned silicon wafers / Ronchin, Sabina ; Boscardin, Maurizio ; Dalla Betta, Gian Franco ; Gregori, Paolo ; Guarnieri, Vittorio ; Piemonte, Claudio ; Zorzi, Nicola
Thin substrates are one of the possible choices to provide radiation hard detectors for future high-energy physics experiments. Among the advantages of thin detectors are the low full depletion voltage, even after high particle fluences, the improvement of the tracking precision and momentum resolution and the reduced material budget. [...]
2004 - Published in : Nucl. Instrum. Methods Phys. Res., A 530 (2004) 134-138

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43 Piemonte, C
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