Timing Characterization of Helium-4 Fast Neutron Detector with EJ-309 Organic Liquid Scintillator

Author:

Liang Yinong,Zhu Ting,Enqvist Andreas

Abstract

Recently, the Helium-4 gas fast neutron scintillation detectors is being used in time-sensitive measurements, such time-of-flight and multiplicity counting. In this paper, a set of time aligned signals was acquired in a coincidence measurement using the Helium-4 gas detectors and EJ-309 liquid scintillators. The high-speed digitizer system is implanted with a trigger moving average window (MAW) unit combing with its constant fraction discriminator (CFD) feature. It can calculate a “time offset” to the timestamp value to get a higher resolution timestamp (up to 50 ps), which is better than the digitizer's time resolution (4 ns) [1]. The digitized waveforms were saved to the computer hard drive and post processed with digital analysis code to determine the difference of their arrival times. The full-width at half-maximum (FWHM) of the Gaussian fit was used as to examine the resolution. For the cascade decay of Cobalt-60 (1.17 and 1.33 MeV), the first version of the Helium-4 detector with two Hamamatsu R580 photomultipliers (PMT) installed at either end of the cylindrical gas chamber (20 cm in length and 4.4 cm in diameter) has a time resolution which is about 3.139 ns FWHM. With improved knowledge of the timing performance, the Helium-4 scintillation detectors are excellent for neutron energy spectrometry applications requiring high temporal and energy resolutions.

Publisher

EDP Sciences

Reference14 articles.

1. “16 Channel VME Digitizer User Manual,” 2015.

2. Performance of the neutron time-of-flight facility n_TOF at CERN

3. Neutron response function characterization of 4He scintillation detectors

4. Improved fission neutron energy discrimination with 4He detectors through pulse filtering

5. Kelley R. P., Zhu T., Gokhale S., Liang Y., Chung H., Kiff S., Murer D., Ray H., Baciak J. E., “Neutron Measurements with Extended Range Helium-4 Detectors in High Gamma Environments,” in 2016 IEEE Symposium on Radiation Measurements and Applications (SORMA West), 2016.

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