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Technical Papers

Design and Characterization of a Scintillator-Based Position-Sensitive Detector for Muon Imaging

, , &
Pages 736-747 | Received 02 Apr 2018, Accepted 08 Sep 2018, Published online: 25 Oct 2018
 

Abstract

This work presents the design of a position-sensitive detector that we are evaluating for cosmic-ray muon imaging. The position-sensitive detector consists of an EJ-200 plastic scintillator panel that is 32 × 32 × 2.5 cm in dimension. A quantity of 32 parallel grooves, each 2 mm wide and 4 mm deep with a pitch of 1 cm, are carved on the top and bottom sides, in perpendicular orientation, of a scintillator panel. Two wavelength shifting optical fibers are embedded in each groove for light collection and transport. The optical fibers from each channel are coupled to one pixel of a Hamamatsu H8500C multi-anode photomultiplier tube. An encoding technique using a one-dimensional resistor network was developed to reduce the number of required readout channels for position determination. The position calibration was performed with a blue light emitting diode. The detector was shown to achieve position resolution of ~1 cm (sigma).

Acknowledgments

This research is being performed using funding received from the U.S. Department of Energy’s Office of Nuclear Energy University Programs.

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