English

SiPM non-linearity studies in beam tests with scintillating crystals

Instrumentation and Detectors 2026-03-10 v1

Abstract

High-granularity homogeneous electromagnetic calorimeters based on scintillating crystals and silicon photomultipliers (SiPMs) are a promising option for future e+ee^{+}e^{-} Higgs factories, where both excellent energy resolution and a very large dynamic range are required. In this work, the non-linear response of high-pixel-density SiPMs with pixel pitches of 6--10~μ\mum coupled to BGO and BSO crystals is studied under realistic beam conditions. A dual-end readout scheme with an attenuated reference SiPM was employed to precisely calibrate the deposited energy and the corresponding number of photoelectrons over a wide dynamic range. Beam tests were carried out at the CERN SPS H2 beamline using high-energy electrons, with a tungsten pre-shower and variable incident angles to enhance energy deposition. The measurements directly quantify the non-linear response of SiPMs to scintillation light over an extended dynamic range. For BGO-coupled Hamamatsu SiPMs, deviations from linearity of about 20\% are observed at 5×1055\times10^{5} photoelectrons, while larger deviations are measured for the tested NDL devices and for configurations with faster BSO scintillation.

Keywords

Cite

@article{arxiv.2603.08167,
  title  = {SiPM non-linearity studies in beam tests with scintillating crystals},
  author = {Zhiyu Zhao and Dejing Du and Shu Li and Yong Liu and Baohua Qi and Jack Rolph and Haijun Yang},
  journal= {arXiv preprint arXiv:2603.08167},
  year   = {2026}
}
R2 v1 2026-07-01T11:09:57.992Z