Performance of Linear Classification Algorithms on alpha/gamma Discrimination for LaBr3:Ce Scintillation Detectors with Various Pulse Digitizer Properties.

With the development of high-speed readout electronics, the digital pulse shape discrimination (PSD) methods have attracted the attention of more researchers, especially in the field of high energy physics and neutron detection. How to choose a PSD algorithm and corresponding data acquisition system (DAQ) naturally becomes a critical problem to settle down for the detection system designers. In this paper, the relationship between the classification performance of different PSD algorithms and digitizers' sampling properties (including sampling rate and the effective number of bits) has been researched based on $\mathrm{LaBr_3}$:Ce scintillation detectors. A self-developed integrated digitizer configured with five different ADCs and a WavePro 404HD oscilloscope were deployed to digitize the waveforms from $\mathrm{LaBr_3}$:Ce scintillators. Moreover, three PSD methods, charge comparison method (CCM), least square for classification method (LS) and Fisher's linear discriminant analysis (LDA), based on linear model were applied to discriminate the alpha signals from the intrinsic isotope $^{227}$Ac. With the LS method and a 125 MSPS 14-Bit ADC, the FoM value was 1.424$\pm$0.042, which is similar to the result from LDA but 31\% better than the result of CCM. The discrimination results showed that the performances of LS and LDA are less affected by the sampling rate with respect to the CCM method, which reflects in a better PSD capability. The results of this paper can help the developers of detector systems to make a trade-off among sampling properties, desirable discrimination results and the cost of systems.

[1]  Guanghua Gong,et al.  Preliminary Design of Integrated Digitizer Base for Photomultiplier Tube , 2018, IEEE Transactions on Nuclear Science.

[2]  Radford M. Neal Pattern Recognition and Machine Learning , 2007, Technometrics.

[3]  R. Fisher THE USE OF MULTIPLE MEASUREMENTS IN TAXONOMIC PROBLEMS , 1936 .

[4]  David D. Wentzloff,et al.  Influence of sampling properties of fast-waveform digitizers on neutron-gamma-ray, pulse-shape discrimination for organic scintillation detectors , 2013 .

[5]  P. Dorenbos Light output and energy resolution of Ce3+-doped scintillators , 2002 .

[6]  Geoffrey E. Hinton,et al.  Visualizing Data using t-SNE , 2008 .

[7]  Jianping Cheng,et al.  Optimal design of waveform digitisers for both energy resolution and pulse shape discrimination , 2017, 1712.05207.

[8]  D. Cester,et al.  Pulse shape discrimination with fast digitizers , 2014 .

[9]  Zhonghai Wang,et al.  Study of sampling rate influence on neutron-gamma discrimination with stilbene coupled to a silicon photomultiplier. , 2017, Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine.

[10]  Jianmin Li,et al.  Optimization of Energy Resolution and Pulse Shape Discrimination for a CLYC Detector with Integrated Digitizers , 2019 .

[11]  Jianping Cheng,et al.  Quantitative analysis and efficiency study of PSD methods for a LaBr3:Ce detector , 2015, 1504.05346.

[12]  Giacomo Poggi,et al.  Digital-sampling systems in high-resolution and wide dynamic-range energy measurements: Comparison with peak sensing ADCs , 2006 .