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Photoelectron Yields of Scintillation Counters with Embedded Wavelength-Shifting Fibers Read Out With Silicon Photomultipliers


Artikov, Akram (Dubna, JINR) ; Baranov, Vladimir (Dubna, JINR) ; Blazey, Gerald C. (Northern Illinois U.) ; Chen, Ningshun (Virginia U.) ; Chokheli, Davit (Tbilisi State U.) ; Davydov, Yuri (Dubna, JINR) ; Craig Dukes, E. (Virginia U.) ; Dychkant, Alexsander (Northern Illinois U.) ; Ehrlich, Ralf (Virginia U.) ; Francis, Kurt (Northern Illinois U.) ; Frank, M.J. (South Alabama U.) ; Glagolev, Vladimir (Dubna, JINR) ; Group, Craig (Virginia U.) ; Hansen, Sten (Fermilab) ; Magill, Stephen (Argonne (main)) ; Oksuzian, Yuri (Virginia U.) ; Pla-Dalmau, Anna (Fermilab) ; Rubinov, Paul (Fermilab) ; Simonenko, Aleksandr (Dubna, JINR) ; Song, Enhao (Virginia U.) ; Stetzler, Steven (Virginia U.) ; Wu, Yongyi (Virginia U.) ; Uzunyan, Sergey (Northern Illinois U.) ; Zutshi, Vishnu (Northern Illinois U.)

Published in: Nucl.Instrum.Meth.A

Abstract: Photoelectron yields of extruded scintillation counters with titanium dioxide coating and embedded wavelength shifting fibers read out by silicon photomultipliers have been measured at the Fermilab Test Beam Facility using 120\,GeV protons. The yields were measured as a function of transverse, longitudinal, and angular positions for a variety of scintillator compositions and reflective coating mixtures, fiber diameters, and photosensor sizes. Timing performance was also studied. These studies were carried out by the Cosmic Ray Veto Group of the Mu2e collaboration as part of their R\&D program.

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 Запись создана 2017-10-02, последняя модификация 2017-10-02


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