English

Gamma and neutron separation using emission wavelengths in Eu:LiCaI scintillators

Instrumentation and Detectors 2023-01-09 v2 Nuclear Experiment

Abstract

Scintillators have long been known as radiation detectors and are still used in various applications. Recently, scintillators containing 6^6Li have been developed as neutron detectors and have attracted attention. 6^6Li absorbs thermal neutrons and emits α\alpha+3^3H, which is promising as a neutron detector if it can be separated from background gamma rays. We have been developing Eu:LiI-CaI2_2-based scintillators (Eu:LiCaI) for this purpose. In scintillator detectors, waveform information is generally used to distinguish particles such as neutrons and gamma rays. We propose a new particle identification method using emission wavelengths information. In this study, experiments were conducted using Eu:LiCaI crystals, multi-pixel photon counter optical sensors, and long-wavelength cut filters to verify the proposed method. The results of irradiating a 252^{252}Cf neutron source and a 60^{60}Co gamma-ray source indicate that there is a particle dependence of the output signal ratio between with and without filters. This means that different types of radiation particles have different emission wavelengths. This is the first demonstration of a wavelength-based particle identification method.

Keywords

Cite

@article{arxiv.2209.13189,
  title  = {Gamma and neutron separation using emission wavelengths in Eu:LiCaI scintillators},
  author = {Takashi Iida and Masao Yoshino and Kei Kamada and Rei Sasaki and Ryuga Yajima},
  journal= {arXiv preprint arXiv:2209.13189},
  year   = {2023}
}

Comments

13 pages, 10 figures