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CERN Document Server Намерени са 46 записа  1 - 10следващкрай  отиване на запис: Търсенето отне 1.23 секунди. 
1.
Performance of a Front End prototype ASIC for picosecond precision time measurements with LGAD sensors / Agapopoulou, C. (IJCLab, Orsay) ; Blin, S. (Ec. Polytech., OMEGA) ; Blot, A. (IJCLab, Orsay) ; Castillo Garcia, L. (Barcelona, IFAE) ; Chmeissani, M. (Barcelona, IFAE) ; Conforti di Lorenzo, S. (Ec. Polytech., OMEGA) ; de La Taille, C. (Ec. Polytech., OMEGA) ; Dinaucourt, P. (Ec. Polytech., OMEGA) ; Fallou, A. (IJCLab, Orsay) ; Garcia Rodriguez, J. (Barcelona, IFAE) et al.
For the High-Luminosity phase of LHC, the ATLAS experiment is proposing the addition of a High Granularity Timing Detector (HGTD) in the forward region to mitigate the effects of the increased pile-up. The chosen detection technology is Low Gain Avalanche Detector (LGAD) silicon sensors that can provide an excellent timing resolution below 50 ps. [...]
arXiv:2002.06089.- 2020-07-06 - 23 p. - Published in : JINST 15 (2020) P07007 Fulltext: PDF; Fulltext from publisher: PDF;
2.
Radiation tolerance of CVD diamond detectors for pions and protons / Adam, W (OAW, Vienna) ; Berdermann, E (Darmstadt, GSI) ; Bergonzo, P (Saclay) ; Bertuccio, G (Milan Polytechnic) ; Bogani, F (Florence U., LENS) ; Borchi, E (U. Florence (main)) ; Brambilla, A (Saclay) ; Bruzzi, M (U. Florence (main)) ; Colledani, C (Louis Pasteur U., Strasbourg I) ; Conway, J (Rutgers U., Piscataway (main)) et al. /RD42
The paper gives new results on the radiation tolerance of CVD diamond for irradiation with 300 MeV/ c pions and 24 GeV/ c protons. The measured charge signal spectrum is compared at several irradiation levels with the spectrum calculated by a model. [...]
2001 - 8 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 476 (2002) 686-693

In : 3rd International Conference on Radiation Effects on Semiconductor Material, Detectors and Devices, Florence, Italy, 28 - 30 Jun 2000, pp.686-693
3.
Parameterisation of radiation effects on CVD diamond for proton irradiation / Hartjes, F (Nikhef, Amsterdam) ; Adam, W (OAW, Vienna) ; Bauer, C (Heidelberg, Max Planck Inst.) ; Berdermann, E (Darmstadt, GSI) ; Bergonzo, P (Saclay) ; Bogani, F (Florence U., LENS) ; Borchi, E (U. Florence (main)) ; Brambilla, A (Saclay) ; Bruzzi, M (U. Florence (main)) ; Colledani, C (Louis Pasteur U., Strasbourg I) et al. /RD42
The paper reviews measurements of the radiation hardness of CVD diamond for 24 GeV/c proton irradiation at fluences up to $5 \times 10^{15}$ protons/cm$^2$ . The results not only show radiation damage but also an annealing effect that is dominant at levels around %10^{15}$ protons/cm$^2$ . [...]
1999 - 8 p. - Published in : Nucl. Phys. B, Proc. Suppl. 78 (1999) 675-682



In : 6th International Conference on Advanced Technology and Particle Physics : ICATPP-6, Como, Italy, 5 - 9 Oct 1998, pp.675-682
4.
New developments in CVD diamond for detector applications / Adam, W (OAW, Vienna) ; Berdermann, E (Darmstadt, GSI) ; Bergonzo, P (CEA-DTA-LETI, Grenoble) ; de Boer, W (Karlsruhe U.) ; Bogani, F (Florence U., LENS) ; Borchi, E (U. Florence (main)) ; Brambilla, A (CEA-DTA-LETI, Grenoble) ; Bruzzi, M (U. Florence (main)) ; Colledani, C (Louis Pasteur U., Strasbourg I) ; Conway, J (Rutgers U., Piscataway (main)) et al. /RD42
Chemical Vapor Deposition (CVD) diamond has been discussed extensively as an alternative sensor material for use very close to the interaction region of the LHC and other machines where extreme radiation conditions exist. During the last seven years the RD42 collaboration has developed diamond detectors and tested them with LHC electronics towards the end of creating a device usable by experiments. [...]
2004 - 3 p. - Published in : Eur. Phys. J. C 33 (2004) S1014-S1016

In : EPS International Europhysics Conference on High-Energy Physics, Aachen, Germany, 17 - 23 Jul 2003, pp.S1014-S1016
5.
Construction, assembly and tests of the ATLAS electromagnetic end-cap calorimeters / Aleksa, M (CERN) ; Astesan, F ; Banfi, D ; Barreiro, F ; Barrillon, P ; Benchouk, C ; Bertoli, W ; Bremer, J ; Braun, H M ; Canton, B et al.
2008 - Published in : JINST 3 (2008) P06002 SISSA/IOP Open Access article: jinst8_06_p06002_1 - PDF; jinst8_06_p06002 - PDF;
6.
The development of diamond tracking detectors for the LHC / Adam, W ; Berdermann, E ; Bergonzo, P ; de Boer, Wim ; Bogani, F ; Borchi, E ; Brambilla, A ; Bruzzi, M ; Colledani, C ; Conway, J et al.
Chemical vapor deposition diamond has been discussed extensively as an alternate sensor material for use very close to the interaction region of the LHC where extreme radiation conditions exist. During the last few years diamond devices have been manufactured and tested with LHC electronics with the goal of creating a detector usable by all LHC experiment. [...]
2003 - Published in : Nucl. Instrum. Methods Phys. Res., A 514 (2003) 79-86
7.
Pixel Detector Description for simulation for the ATLAS Technical Proposal / Bintinger, D L ; Delpierre, P A ; Einsweiler, K F ; Fallou, A ; Gilchriese, M G D ; Hallewell, G D ; Mouthuy, T
ATL-INDET-94-089 ; ATL-I-PN-89.
- 1994.
Full text - Access to fulltext document
8.
Pixel detector back-up Document to support the ATLAS Technical Proposal / Fischer, P ; Raith, B ; Wermes, N ; Lankford, A ; Pier, S ; Schmid, B ; Campbell, M ; Jarron, P ; Heijne, Erik H M ; Middelkamp, P et al.
ATL-INDET-94-086 ; ATL-I-PN-86.
- 1994.
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9.
Two-phase liquid-gas cooling for silicon PIXEL detectors / Fallou, A ; Hallewell, G D ; Labat, D
ATL-INDET-94-065 ; ATL-I-PN-65.
- 1994.
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10.
The ATLAS Silicon Inner Tracker and Vertex Detector: Design Considerations and Related Technologies / Apsimon, R ; Blocki, J ; Buran, T ; Delpierre, P A ; Fallou, A ; Gadomski, S ; Hallewell, G D ; Pakonski, K ; Mouthuy, T ; Smith, K et al.
ATL-INDET-92-014 ; ATL-I-PN-14.
- 1992.
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