English

Optimized scintillation configuration for IMPISH hard x-ray detection

Instrumentation and Methods for Astrophysics 2025-09-23 v1 Solar and Stellar Astrophysics Space Physics

Abstract

The Integrating Miniature Piggyback for Impulsive Solar Hard X-rays (IMPISH) is a solar X-ray spectrometer that features large-area scintillators, fast readout electronics, and good energy resolution in the hard X-ray band. IMPISH is a low-cost spectrometer designed to measure subsecond variation in hard X-ray time profiles from solar flares, with the goal of constraining particle acceleration timescales. To meet these requirements, we carried out a systematic optimization of the scintillation design, focusing on maximizing photon collection, reducing noise level, and improving energy resolution. We tested two high-yield scintillating crystals (LYSO, lutetium yttrium oxyorthosilicate, and GAGG, gadolinium aluminum gallium garnet), two reflector types (specular and lambertian), two kinds of surface finishes (all sides polished and readout face only polished), different optical coupling materials and thicknesses, multiple geometries, and readout face angles. Our studies show that light collection improves with increasing the crystal's effective area, breaking its symmetry, and reducing the photon's travel length. These minimize photon loss due to self-absorption and total internal reflection. Through combined simulation and laboratory tests, we achieved an optimal energy resolution with the LYSO trapezoid-shaped crystal coupled to a Broadcom NUV-MT SiPM with an approximately 0.25 mm thin Sylgard 184 optical pad.

Keywords

Cite

@article{arxiv.2508.15123,
  title  = {Optimized scintillation configuration for IMPISH hard x-ray detection},
  author = {Dorcas D. Oseni and William S. Setterberg and Reed B. Masek and Lestat Clemmer and Lindsay Glesener and Philip Williams and John Sample and David M. Smith and Amir Caspi and Demoz Gebre-Egziabher and Albert Shih and Pascal Saint-Hilaire},
  journal= {arXiv preprint arXiv:2508.15123},
  year   = {2025}
}

Comments

17 pages, 14 figures, submitted to SPIE Optics + Photonics 2025 conference proceedings

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