Emission characteristics of gadolinium ions in a water Cherenkov detector

Author:

Iwata Y12,Sekiya H34,Ito C5

Affiliation:

1. Advanced Radiation Measurement and Analysis Research Group, Collaborative Laboratories for Advanced Decommissioning Sciences , Japan Atomic Energy Agency, 2-4 Shirakata, Tokai-mura, Naka-gun, Ibaraki 319-1195, Japan

2. Nuclear Professional School, The University of Tokyo, 2-22 Shirakata-Shirane , Tokai-mura, Naka-gun, Ibaraki 319-1188, Japan

3. Kamioka Observatory, Institute for Cosmic Ray Research, The University of Tokyo , 456 Higashi-Mozumi, Kamioka, Hida, Gifu 506-1205, Japan

4. Kavli Institute for the Physics and Mathematics of the Universe (WPI) , The University of Tokyo Institutes for Advanced Study, The University of Tokyo, Kashiwa, Chiba 277-8583, Japan

5. Experimental Fast Reactor Department, Oarai Research and Development Institute , Japan Atomic Energy Agency, 4002 Narita, Oarai, Ibaraki 311-1393, Japan

Abstract

Abstract To observe supernova relic neutrino events, 13 tons of gadolinium sulfate octahydrate (Gd2(SO4)3·8H2O), corresponding to 0.01% Gd solution, was dissolved in the Super-Kamiokande water Cherenkov detector in 2020. The aim is to improve the detection efficiency of neutrons from inverse β decay involving electron antineutrinos. However, Gd3+ ions can be excited by the Cherenkov light from cosmic muons, and the subsequent emission at 312 nm is a possible background (BG) source for Cherenkov signal detection. In this work, we constructed an experimental setup based on time-resolved laser-induced luminescence spectroscopy to investigate the emission characteristics of Gd3+ ions in water. The excitation laser wavelength was tuned in the range of 245–255 nm, and large resonant peaks were observed at 246.2 nm and 252.3 nm with measured emission lifetimes of around 3 ms. Good linearity was observed between Gd concentration and emission intensity for these two wavelengths, indicating that our setup is useful for remote monitoring of Gd concentration. According to the simulation results using our spectroscopic data and reference values, the Gd3+ emission BG rate from cosmic muons is expected to be 10−1 counts/μs or less, which seems small but not negligible.

Funder

Japan Society for the Promotion of Science

University of Tokyo

Publisher

Oxford University Press (OUP)

Subject

General Physics and Astronomy

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