Back to Search Start Over

RADiCAL—Precision Timing, Ultracompact, Radiation-Hard Electromagnetic Calorimetry.

Authors :
Anderson, Thomas
Barbera, Thomas
Cox, Bradley
Debbins, Paul
Dubnowski, Maxwell
Ford, Kiva
Herrmann, Maxwell
Hu, Chen
Jessop, Colin
Kamer-Koseyan, Ohannes
Ledovskoy, Alexander
Onel, Yasar
Perez-Lara, Carlos
Ruchti, Randal
Ruggiero, Daniel
Smith, Daniel
Vigneault, Mark
Wan, Yuyi
Wayne, Mitchell
Wetzel, James
Source :
Instruments (2410-390X); Sep2022, Vol. 6 Issue 3, pN.PAG-N.PAG, 6p
Publication Year :
2022

Abstract

To address the challenges of providing high-performance calorimetry in future hadron collider experiments under conditions of high luminosity and high radiation (FCC-hh environments), we conducted R&D on advanced calorimetry techniques suitable for such operation, based on scintillation and wavelength-shifting technologies and photosensor (SiPM and SiPM-like) technology. In particular, we focused our attention on ultra-compact radiation-hard EM calorimeters based on modular structures (RADiCAL modules) consisting of alternating layers of the very dense absorber and scintillating plates, read out via radiation hard wavelength shifting (WLS) solid fiber or capillary elements to photosensors positioned either proximately or remotely, depending upon their radiation tolerance. RADiCAL modules provide the capability to measure simultaneously and with high precision the position, energy and timing of EM showers. This paper provides an overview of the instrumentation and photosensor R&D associated with the RADiCAL program. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
2410390X
Volume :
6
Issue :
3
Database :
Complementary Index
Journal :
Instruments (2410-390X)
Publication Type :
Academic Journal
Accession number :
159306911
Full Text :
https://doi.org/10.3390/instruments6030027