English

Design and Characterization of an Optically-Segmented Single Volume Scatter Camera Module

Instrumentation and Detectors 2024-10-28 v1

Abstract

The Optically Segmented Single Volume Scatter Camera (OS-SVSC) aims to image neutron sources for nuclear non-proliferation applications using the kinematic reconstruction of elastic double-scatter events. We report on the design, construction, and calibration of one module of a new prototype. The module includes 16 EJ-204 organic plastic scintillating bars individually wrapped in Teflon tape, each measuring 0.5 cm×\times0.5 cm×\times20 cm. The scintillator array is coupled to two custom Silicon Photomultiplier (SiPM) boards consisting of a 2×\times8 array of SensL J-Series-60035 Silicon Photomultipliers, which are read out by a custom 16 channel DRS-4 based digitizer board. The electrical crosstalk between SiPMs within the electronics chain is measured as 0.76% ±\pm 0.11% among all 16 channels. We report the detector response of one module including interaction position, time, and energy, using two different optical coupling materials: EJ-560 silicone rubber optical coupling pads and EJ-550 optical coupling grease. We present results in terms of the overall mean and standard deviation of the z-position reconstruction and interaction time resolutions for all 16 bars in the module. We observed the z-position resolution for gamma interactions in the 0.3 MeVee to 0.4 MeVee range to be 2.24 cm±\pm1.10 cm and 1.45 cm±\pm0.19 cm for silicone optical coupling pad and optical grease, respectively. The observed interaction time resolution is 265 ps±\pm29 ps and 235 ps±\pm10 ps for silicone optical coupling pad and optical grease, respectively.

Keywords

Cite

@article{arxiv.2112.10704,
  title  = {Design and Characterization of an Optically-Segmented Single Volume Scatter Camera Module},
  author = {Kevin Keefe and Hassam Alhajaji and Erik Brubaker and Andrew Druetzler and Aline Galindo-Tellez and John Learned and Paul Maggi and Juan J. Manfredi and Kurtis Nishimura and Bejamin Pinto Souza and John Steele and Melinda Sweany and Eric Takahashi},
  journal= {arXiv preprint arXiv:2112.10704},
  year   = {2024}
}

Comments

11 pages, 21 figures. This work has been submitted to the IEEE for possible publication

R2 v1 2026-06-24T08:24:58.090Z