Title :
Pixelated Geiger-Mode Avalanche Photo-Diode Characterization Through Dark Current Measurement
Author :
Amaudruz, Pierre-Andre ; Bishop, David ; Gilhully, Colleen ; Goertzen, Andrew ; James, Lam ; Kozlowski, P. ; Retiere, F. ; Shams, E. ; Sossi, V. ; Stortz, G. ; Thiessen, J.D. ; Thompson, C.J.
Author_Institution :
TRIUMF, Vancouver, BC, Canada
Abstract :
PIXELATED Geiger-mode avalanche photodiodes (PPDs), often called silicon photomultipliers (SiPMs) are emerging as an excellent replacement for traditional photomultiplier tubes (PMTs) in a variety of detectors, especially those for subatomic physics experiments, which requires extensive test and operation procedures in order to achieve uniform responses from all the devices. In this paper, we show for two PPD brands, Hamamatsu MPPC and SensL SPM, that at room temperature, the dark noise rate, breakdown voltage and rate of correlated avalanches can be inferred from the sole measure of dark current as a function of operating voltage, hence greatly simplifying the characterization procedure. We introduce a custom electronics system that allows measurement for many devices concurrently, hence allowing rapid testing and monitoring of many devices at low cost. Finally, we show that the dark current of Hamamastu Multi-Pixel Photon Counter (MPPC) is rather independent of temperature at constant operating voltage, hence the current measure cannot be used to probe temperature variations. On the other hand, the MPPC current can be used to monitor light source conditions in DC mode without requiring strong temperature stability, as long as the integrated source brightness is comparable to the dark noise rate.
Keywords :
Geiger counters; avalanche photodiodes; electric current measurement; nuclear electronics; photomultipliers; silicon radiation detectors; Hamamastu Multi-Pixel Photon Counter; Hamamatsu MPPC; MPPC current; SensL SPM; breakdown voltage; characterization procedure; constant operating voltage; correlated avalanches; custom electronics system; dark current measurement; dark noise rate; integrated source brightness; light source conditions; operation procedures; photomultiplier tubes; pixelated Geiger-mode avalanche photodiode characterization; room temperature; silicon photomultipliers; strong temperature stability; subatomic physics experiments; temperature variations; Current measurement; Noise; Temperature dependence; Temperature distribution; Temperature measurement; Temperature sensors; Voltage measurement; Dark current; multipixel avalanche photodiodes; photodetectors; photosensors;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2014.2319080