Temperature dependence of radiation damage annealing of Silicon Photomultipliers
arXiv:2212.08474 · doi:10.1016/j.nima.2022.167934
Abstract
The last decade has increasingly seen the use of silicon photomultipliers (SiPMs) instead of photomultiplier tubes (PMTs). This is due to various advantages of the former on the latter like its smaller size, lower operating voltage, higher detection efficiency, insensitivity to magnetic fields and mechanical robustness to launch vibrations. All these features make SiPMs ideal for use on space based experiments where the detectors require to be compact, lightweight and capable of surviving launch conditions. A downside with the use of this novel type of detector in space conditions is its susceptibility to radiation damage. In order to understand the lifetime of SiPMs in space, both the damage sustained due to radiation as well as the subsequent recovery, or annealing, from this damage have to be studied. Here we present these studies for three different types of SiPMs from the Hamamatsu S13360 series. Both their behaviour after sustaining radiation equivalent to 2 years in low earth orbit in a typical mission is presented, as well as the recovery of these detectors while stored in different conditions. The storage conditions varied in temperature as well as in operating voltage. The study found that the annealing depends significantly on the temperature of the detectors with those stored at high temperatures recovering significantly faster and at recovering closer to the original performance. Additionally, no significant effect from a reasonable bias voltage on the annealing was observed. Finally the annealing rate as a function of temperature is presented along with various operating strategies for the future SiPM based astrophysical detector POLAR-2 as well as for future SiPM based space borne missions.
33 pages, 24 figures
References in corpus (6)
- Design and construction of the POLAR detector
- Radiation damage assessment of SensL SiPMs
- Development and science perspectives of the POLAR-2 instrument: a large scale GRB polarimeter
- In-orbit Radiation Damage Characterization of SiPMs in the GRID-02 CubeSat Detector
- A compact instrument for gamma-ray burst detection on a CubeSat platform II: Detailed design, assembly and validation
- SiPM proton irradiation for application in cosmic space
Cited by in corpus (6)
- Response of the first POLAR-2 Prototype to Polarized Beams
- Protocols for healing radiation-damaged single-photon detectors suitable for space environment
- Design and Performance of a Universal SiPM Readout System for X- and Gamma-Ray Missions
- Performance and radiation damage mitigation strategy for silicon photomultipliers on LEO space missions
- Characterization of more than three years of in-orbit radiation damage of SiPMs on GRBAlpha and VZLUSAT-2 CubeSats
- Proton irradiation of plastic scintillator bars for POLAR-2