Updated Results of a Solid-State Sensor Irradiation Study for ILC Extreme Forward Calorimetry
Abstract
Detectors proposed for the International Linear Collider (ILC) incorporate a tungsten sampling calorimeter (`BeamCal') intended to reconstruct showers of electrons, positrons and photons that emerge from the interaction point of the collider with angles between 5 and 50 milliradians. For the innermost radius of this calorimeter, radiation doses at shower max are expected to reach 100 Mrad per year, primarily due to minimum-ionizing electrons and positrons that arise in the induced electromagnetic showers of e+e- `beamstrahlung' pairs produced in the ILC beam-beam interaction. However, radiation damage to calorimeter sensors may be dominated by hadrons induced by nuclear interactions of shower photons, which are much more likely to contribute to the non-ionizing energy loss that has been observed to damage sensors exposed to hadronic radiation. We report here on the results of SLAC Experiment T-506, for which several different types of silicon diode and gallium-arsenide sensors were exposed to doses of radiation induced by showering electrons of energy 3.5-13.3 GeV. By embedding the sensor under irradiation within a tungsten radiator, the exposure incorporated hadronic species that would potentially contribute to the degradation of a sensor mounted in a precision sampling calorimeter. Depending on sensor technology, efficient charge collection was observed for doses as large as 270 Mrad.
Keywords
Cite
@article{arxiv.1602.08552,
title = {Updated Results of a Solid-State Sensor Irradiation Study for ILC Extreme Forward Calorimetry},
author = {George Courcoubetis and Wyatt Crockett and Vitaliy Fadeyev and Caleb Fink and Nikolas Guillemaud and Cesar Gonzalez Renteria and Benjamin Gruey and Patrick LaBarre and Forest Martinez-McKinney and Greg Rischbieter and Bruce A. Schumm and Edwin Spencer and Max Wilder},
journal= {arXiv preprint arXiv:1602.08552},
year = {2016}
}
Comments
11 pages and 10 figures. Talk presented at the International Workshop on Future Linear Colliders (LCWS15), Whistler, Canada, 2-6 November 2015. arXiv admin note: substantial text overlap with arXiv:1503.07322, arXiv:1402.2692