DocumentCode
1342850
Title
Simulation of Silicon Photomultiplier Signals
Author
Seifert, Stefan ; Van Dam, Herman T. ; Huizenga, Jan ; Vinke, Ruud ; Dendooven, Peter ; Löhner, Herbert ; Schaart, Dennis R.
Author_Institution
Delft Univ. of Technol., Delft, Netherlands
Volume
56
Issue
6
fYear
2009
Firstpage
3726
Lastpage
3733
Abstract
In a silicon photomultiplier (SiPM), also referred to as multi-pixel photon counter (MPPC), many Geiger-mode avalanche photodiodes (GM-APDs) are connected in parallel so as to combine the photon counting capabilities of each of these so-called microcells into a proportional light sensor. The discharge of a single microcell is relatively well understood and electronic models exist to simulate this process. In this paper we introduce an extended model that is able to simulate the simultaneous discharge of multiple cells. This model is used to predict the SiPM signal in response to fast light pulses as a function of the number of fired cells, taking into account the influence of the input impedance of the SiPM preamplifier. The model predicts that the electronic signal is not proportional to the number of fired cells if the preamplifier input impedance is not zero. This effect becomes more important for SiPMs with lower parasitic capacitance (which otherwise is a favorable property). The model is validated by comparing its predictions to experimental data obtained with two different SiPMs (Hamamatsu S10362-11-25u and Hamamatsu S10362-33-25c) illuminated with ps laser pulses. The experimental results are in good agreement with the model predictions.
Keywords
Geiger counters; avalanche photodiodes; capacitance; nuclear electronics; photomultipliers; photon counting; position sensitive particle detectors; preamplifiers; silicon radiation detectors; GM-APD; Geiger-mode avalanche photodiodes; Hamamatsu S10362-11-25u; Hamamatsu S10362-33-25c; MPPC; SiPM signal; electronic model; laser pulse; light sensor; multipixel photon counter; parasitic capacitance; preamplifier input impedance; silicon photomultiplier; Avalanche photodiodes; Counting circuits; Fast light; Impedance; Microcell networks; Optoelectronic and photonic sensors; Photomultipliers; Preamplifiers; Predictive models; Silicon; Equivalent circuit model; MPPC; SiPM; non-proportionality; simulation;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2009.2030728
Filename
5341428
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