CERN Accelerating science

CERN Document Server 3 záznamov nájdených  Hľadanie trvalo 0.58 sekúnd. 
1.
Radioactive source calibration test of the CMS Hadron Endcap Calorimeter test wedge with Phase I upgrade electronics / Bilki, B (Iowa U.) ; Sirunyan, A M (Yerevan Phys. Inst.) ; Tumasyan, A (Yerevan Phys. Inst.) ; Litomin, A (Minsk, NCPHEP) ; Mossolov, V (Minsk, NCPHEP) ; Shumeiko, N (Minsk, NCPHEP) ; Van De Klundert, M (Antwerp U.) ; Van Haevermaet, H (Antwerp U.) ; Van Mechelen, P (Antwerp U.) ; Van Spilbeeck, A (Antwerp U.) et al. /CMS HCAL
The Phase I upgrade of the CMS Hadron Endcap Calorimeters consists of new photodetectors (Silicon Photomultipliers in place of Hybrid Photo-Diodes) and front-end electronics. The upgrade will eliminate the noise and the calibration drift of the Hybrid Photo-Diodes and enable the mitigation of the radiation damage of the scintillators and the wavelength shifting fibers with a larger spectral acceptance of the Silicon Photomultipliers. [...]
2017 - 18 p. - Published in : JINST 12 (2017) P12034 Fulltext: 10.1088_1748-0221_12_12_P12034 - PDF; pdf - PDF;
2.
Brightness and uniformity measurements of plastic scintillator tiles at the CERN H2 test beam / CMS-HCAL Collaboration
We study the light output, light collection efficiency and signal timing of a variety of organic scintillators that are being considered for the upgrade of the hadronic calorimeter of the CMS detector. The experimental data are collected at the H2 test-beam area at CERN, using a 150 GeV muon beam. [...]
arXiv:1709.08672.- 2018-01-05 - 17 p. - Published in : JINST 13 (2018) P01002 Fulltext: pdf - PDF; arXiv:1709.08672 - PDF; 10.1088_1748-0221_13_01_P01002 - PDF; External link: Open Access fulltext
3.
Liquid scintillator tiles for calorimetry / Amouzegar, M (Maryland U.) ; Belloni, A (Maryland U.) ; Bilki, B (Iowa U.) ; Calderon, J (Maryland U.) ; Barbaro, P De (Rochester U.) ; Eno, S C (Maryland U.) ; Hatakeyama, K (Baylor U.) ; Hirschauer, J (Fermilab) ; Jeng, G Y (Maryland U.) ; Pastika, N J (Baylor U.) et al.
Future experiments in high energy and nuclear physics may require large, inexpensive calorimeters that can continue to operate after receiving doses of 50 Mrad or more. The light output of liquid scintillators suffers little degradation under irradiation. [...]
FERMILAB-PUB-16-624-CMS.- 2016 - Published in : JINST 11 (2016) P11018 Fulltext: PDF; IOP Open Access article: PDF;

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