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CERN Document Server Намерени са 13 записа  1 - 10следващ  отиване на запис: Търсенето отне 0.57 секунди. 
1.
HKROC: an integrated front-end ASIC to readout photomultiplier tubes for the Hyper-Kamiokande experiment / Conforti Di Lorenzo, S (Ec. Polytech., OMEGA) ; Afiri, A (Ecole Polytechnique) ; Bolognesi, S (IRFU, Saclay) ; Bombardi, G (CERN) ; Bouyjou, F (IRFU, Saclay) ; Callier, S (Ec. Polytech., OMEGA) ; De La Taille, C (Ec. Polytech., OMEGA) ; Dinaucourt, P (Ec. Polytech., OMEGA) ; Drapier, O (Ecole Polytechnique) ; Dulucq, F (Ec. Polytech., OMEGA) et al.
The HKROC ASIC was originally designed to readout the photomultiplier tubes (PMTs) for the Hyper-Kamiokande (HK) experiment. HKROC is a very innovative ASIC capable of readout a large number of channels satisfying stringent requirements in terms of noise, speed and dynamic range. [...]
2023 - 7 p. - Published in : JINST 18 (2023) C01035
In : Topical Workshop on Electronics for Particle Physics 2022 (TWEPP 2022), Bergen, Norway, 19 - 23 Sep 2022, pp.C01035
2.
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;
3.
Test of full size Cherenkov detector for proton Flux Measurements / Burmistrov, L (Orsay, LAL) ; Breton, D (Orsay, LAL) ; Cavoto, G (INFN, Rome) ; Chaumat, V (Orsay, LAL) ; Collin, J (Orsay, LAL) ; Conforti Di Lorenzo, S (Orsay, LAL) ; Garattini, M (CERN) ; Iacoangeli, F (INFN, Rome) ; Jeglot, J (Orsay, LAL) ; Maalmi, J (Orsay, LAL) et al.
The device called Cherenkov detector for proton Flux Measurement is going to be installed inside of the primary vacuum of the Super Proton Synchrotron to monitor a secondary beam produced by the bent crystal inserted in the proton halo. Test of this detector with 449 MeV electrons was performed at beam test facility at Frascati. [...]
2015 - 3 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 787 (2015) 173-175 Elsevier Open Access article: PDF;
In : 7th International Conference on New Developments in Photodetection, Tours, France, 30 Jun - 4 Jul 2014, pp.173-175
4.
Resistive Plate Chamber Digitization in a Hadronic Shower Environment / CALICE Collaboration
The CALICE Semi-Digital Hadron Calorimeter (SDHCAL) technological prototype is a sampling calorimeter using Glass Resistive Plate Chamber detectors with a three-threshold readout as the active medium. This technology is one of the two options proposed for the hadron calorimeter of the International Large Detector for the International Linear Collider. [...]
arXiv:1604.04550; CALICE-PUB-2016-004; CALICE Analysis Note CAN-053; CALICE-CAN-2016-002.- 2016-06-28 - 24 p. - Published in : JINST 11 (2016) P06014 Fulltext: arXiv:1604.04550 - PDF; 10.1088_1748-0221_11_06_P06014 - PDF; IOP Open Access article: PDF; Link to CALICE Note: PDF; External link: Preprint
5.
First results of the CALICE SDHCAL technological prototype / CALICE Collaboration
The CALICE Semi-Digital Hadronic Calorimeter (SDHCAL) prototype, built in 2011, was exposed to beams of hadrons, electrons and muons in two short periods in 2012 on two different beam lines of the CERN SPS. The prototype with its 48 active layers, made of Glass Resistive Plate Chambers and their embedded readout electronics, was run in triggerless and power-pulsing mode [...]
arXiv:1602.02276; CALICE-PUB-2016-001.- 2016-04-01 - 36 p. - Published in : JINST 11 (2016) P04001 Fulltext: PDF; External link: Preprint
6.
Pion and proton showers in the CALICE scintillator-steel analogue hadron calorimeter / CALICE Collaboration
Showers produced by positive hadrons in the highly granular CALICE scintillator-steel analogue hadron calorimeter were studied. The experimental data were collected at CERN and FNAL for single particles with initial momenta from 10 to 80 GeV/c. [...]
arXiv:1412.2653; CALICE-PUB-2014-003; CALICE-CAN-2013-001; CALICE Analysis Note CAN-040; CALICE Analysis Note CAN-040a; CALICE Analysis Note CAN-040b.- Geneva : CERN, 2015-04-28 - 25 p. - Published in : JINST 10 (2015) P04014 Addendum CAN-040a: PDF; Addendum CAN-040b: PDF; CALICE Note: PDF; Fulltext: AIDA-PUB-2014-027 - PDF; arXiv:1412.2653 - PDF; IOP Open Access article: PDF; External link: Preprint
7.
Testing Hadronic Interaction Models using a Highly Granular Silicon-Tungsten Calorimeter / CALICE Collaboration
A detailed study of hadronic interactions is presented using data recorded with the highly granular CALICE silicon-tungsten electromagnetic calorimeter. Approximately 350,000 selected negatively charged pion events at energies between 2 and 10 GeV have been studied. [...]
arXiv:1411.7215; CALICE-PUB-2014-002.- Geneva : CERN, 2015-09-11 - 15 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 794 (2015) 240-254 Elsevier Open Access article: PDF; Fulltext: arXiv:1411.7215 - PDF; AIDA-PUB-2014-024 - PDF; External link: Preprint
8.
The Time Structure of Hadronic Showers in Highly Granular Calorimeters with Tungsten and Steel Absorbers / CALICE Collaboration
The intrinsic time structure of hadronic showers influences the timing capability and the required integration time of hadronic calorimeters in particle physics experiments, and depends on the active medium and on the absorber of the calorimeter. With the CALICE T3B experiment, a setup of 15 small plastic scintillator tiles read out with Silicon Photomultipliers, the time structure of showers is measured on a statistical basis with high spatial and temporal resolution in sampling calorimeters with tungsten and steel absorbers. [...]
arXiv:1404.6454; MPP-2014-147; CALICE-PUB-2014-001; MPP-2014-147.- Geneva : CERN, 2014 - 22 p. - Published in : JINST 9 (2014) P07022 AIDA fulltext: PDF; Fulltext: PDF; IOP Open Access article: PDF; External link: Preprint
9.
Performance of the first prototype of the CALICE scintillator strip electromagnetic calorimeter / CALICE Collaboration
A first prototype of a scintillator strip-based electromagnetic calorimeter was built, consisting of 26 layers of tungsten absorber plates interleaved with planes of 45x10x3 mm3 plastic scintillator strips. Data were collected using a positron test beam at DESY with momenta between 1 and 6 GeV/c. [...]
arXiv:1311.3761; CALICE-PUB-2013-004.- 2014-11-01 - 12 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 763 (2014) 278-289 Elsevier Open Access article: PDF; Fulltext: PDF; External link: Preprint
10.
Shower development of particles with momenta from 1 to 10 GeV in the CALICE Scintillator-Tungsten HCAL / CALICE Collaboration
We present a study of the showers initiated by low momentum (p 10 GeV) electrons, pions and protons in the highly granular CALICE scintillator-tungsten HCAL. The data were taken at the CERN PS in September-October 2010. [...]
arXiv:1311.3505; CALICE-CAN-2012-001; CALICE Analysis Note CAN-036; AIDA-PUB-2014-004; CALICE-PUB-2013-003.- Geneva : CERN, 2014-01-10 - 28 p. - Published in : JINST 9 (2014) P01004 CALICE Note: PDF; Fulltext: PDF; IOP Open Access article: PDF; External link: Preprint

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