CERN Accelerating science

CERN Document Server 9 εγγραφές βρέθηκαν  Η έρευνα πήρε 0.74 δευτερόλεπτα. 
1.
Increase of the photoconductivity quantum yield in silicon irradiated by neutrons to extremely high fluences / Vaitkus, Juozas V (Vilnius U. (main)) ; Moll, Michael (CERN) ; Kažukauskas, Vaidotas (Vilnius U. (main)) ; Vertelis, Vilius (Vilnius U. (main))
An enhanced quantum yield observed in silicon ionizing radiation detectors, neutron-irradiated to extremely high fluences, could be attributed to impact ionization via deep levels. The quantum yield was investigated by the intrinsic photoconductivity optical spectroscopy in silicon irradiated by neutrons to a wide range of fluences up to $1 \times 10^{17}$ neutron cm$^{-2}$. An increase of quantum yield was observed in highly irradiated samples. [...]
2022 - 9 p. - Published in : J. Phys. D 55 (2022) 395104 Fulltext: PDF;
2.
Performance of irradiated bulk SiC detectors / Cunningham, W (Glasgow U.) ; Melone, J (Glasgow U.) ; Horn, M (Glasgow U.) ; Kazukauskas, V (Vilnius U.) ; Roy, P (Glasgow U.) ; Doherty, F (Glasgow U.) ; Glaser, M (CERN) ; Vaitkus, J (Vilnius U.) ; Rahman, M (Glasgow U.) /CERN RD50
Silicon carbide (SiC) is a wide bandgap material with many excellent properties for future use as a detector medium. We present here the performance of irradiated planar detector diodes made from 100-$\mu \rm{m}$-thick semi-insulating SiC from Cree. [...]
2003 - 5 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 509 (2003) 127-131

In : 4th International Workshop on Radiation Imaging Detectors, Amsterdam, The Netherlands, 8 - 12 Sep 2002, pp.127-131
3.
Silicon detectors for the sLHC / Affolder, A (Liverpool U.) ; Aleev, A (Moscow, ITEP) ; Allport, P P (Liverpool U.) ; Andricek, L (Munich, Max Planck Inst.) ; Artuso, M (Syracuse U.) ; Balbuena, J P (Barcelona, Inst. Microelectron.) ; Barabash, L (Kiev, INR) ; Barber, T (Freiburg U.) ; Barcz, A (Inst. Electron Tech., Warsaw ; Warsaw, Inst. Phys. Chem.) ; Bassignana, D (Barcelona, Inst. Microelectron.) et al.
In current particle physics experiments, silicon strip detectors are widely used as part of the inner tracking layers. A foreseeable large-scale application for such detectors consists of the luminosity upgrade of the Large Hadron Collider (LHC), the super-LHC or sLHC, where silicon detectors with extreme radiation hardness are required. [...]
2011 - Published in : Nucl. Instrum. Methods Phys. Res., A 658 (2011) 11-16

In : 8th International Conference on Radiation Effects on Semiconductor Materials Detectors and Devices, Florence, Italy, 12 - 15 Oct 2010, pp.11-16
4.
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
5.
Development of radiation hard semiconductor : devices for very high luminosity colliders / Mauro De Palma, D (INFN, Bari) ; Radicci, V (INFN, Bari) ; Lozano, M (Barcelona, Autonoma U.) ; Campabadal, F (Barcelona, Autonoma U.) ; Ullán, M (Barcelona, Autonoma U.) ; Martínez, C (Barcelona, Autonoma U.) ; Fleta, C (Barcelona, Autonoma U.) ; Key, M (Barcelona, Autonoma U.) ; Raffí, J M (Barcelona, Autonoma U.) ; Kordas, G (Democritos Nucl. Res. Ctr.) et al.
CERN-LHCC-2002-003 ; LHCC-P-6.
- 2002. - 36 p.
Full text - CERN library copies
6.
Development of radiation tolerant semiconductor detectors for the Super-LHC / RD50 Collaboration
The envisaged upgrade of the Large Hadron Collider (LHC) at CERN towards the Super-LHC (SLHC) with a 10 times increased luminosity of 10challenges for the tracking detectors of the SLHC experiments. Unprecedented high radiation levels and track densities and a reduced bunch crossing time in the order of 10ns as well as the need for cost effective detectors have called for an intensive R&D; program. [...]
2005 - Published in : Nucl. Instrum. Methods Phys. Res., A 546 (2005) 99-107
7.
Recent advancements in the development of radiation hard semiconductor detectors for S-LHC / RD50 Collaboration
The proposed luminosity upgrade of the Large Hadron Collider (S-LHC) at CERN will demand the innermost layers of the vertex detectors to sustain fluences of about 1016 hadrons/cm2. Due to the high multiplicity of tracks, the required spatial resolution and the extremely harsh radiation field new detector concepts and semiconductor materials have to be explored for a possible solution of this challenge. [...]
2005 - Published in : Nucl. Instrum. Methods Phys. Res., A 552 (2005) 7-19
8.
Radiation-hard semiconductor detectors for SuperLHC / Bruzzi, Mara ; Adey, J ; Al-Ajili, A A ; Alexandrov, P ; Alfieri, G ; Allport, Philip P ; Andreazza, A ; Artuso, M ; Assouak, S ; Avset, B S et al.
An option of increasing the luminosity of the Large Hadron Collider (LHC) at CERN to 10/sup 35/ cm-/sup 2/s-/sup 1/ has been envisaged to extend the physics reach of the machine. An efficient tracking down to a few centimetres from the interaction point will be required to exploit the physics potential of the upgraded LHC. [...]
2005 - Published in : Nucl. Instrum. Methods Phys. Res., A 541 (2005) 189-201
9. Development of GaAs Detectors for Physics at the LHC / Albertz, Dinstitute et al. - GAASWORKS.
Approved: 07 February 1991.-
Status: Finished
Experiment: RD-8

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