Photoneutron Detection in Lightning by Gadolinium Orthosilicate Scintillators
arXiv:2005.09278 · doi:10.1103/PhysRevD.101.102007
Abstract
During a winter thunderstorm on November 24, 2017, a downward terrestrial gamma-ray flash took place and triggered photonuclear reactions with atmospheric nitrogen and oxygen nuclei, coincident with a lightning discharge at the Kashiwazaki-Kariwa nuclear power station in Japan. We directly detected neutrons produced by the photonuclear reactions with gadolinium orthosilicate scintillation crystals installed at sea level. Two gadolinium isotopes included in the scintillation crystals, Gd and Gd, have large cross-sections of neutron captures to thermal neutrons such as Gd(n,)Gd and Gd(n,)Gd. De-excitation gamma rays from Gd and Gd are self-absorbed in the scintillation crystals, and make spectral-line features which can be distinguished from other non-neutron signals. The neutron burst lasted for 100~ms, and neutron fluences are estimated to be 52 and 31~neutrons~cm at two observation points inside the power plant. Gadolinium orthosilicate scintillators work as valid detectors for thermal neutrons in lightning.
6 pages, 6 figures, accepted for publication in Physical Review D. The copyright is held by American Physical Society
References in corpus (5)
- Photonuclear Reactions in Lightning Discovered from Detection of Positrons and Neutrons
- Detection of high-energy gamma rays from winter thunderclouds
- Reactor antineutrino monitoring with a plastic scintillator array as a new safeguards method
- A mobile antineutrino detector with plastic scintillators
- Gamma Ray Flashes Produced by Lightning Observed at Ground Level by TETRA-II