Abstract
Neutron-gamma discrimination is essential for neutron-sensitive scintillators, while effective approaches for improving pulse shape discrimination (PSD) performance remain limited. Here, a Pr3+-activated Cs2LiYCl6 (CLYC:Pr) elpasolite scintillator single crystal was grown and systematically investigated. The crystal exhibits a light yield of 20589 ph/MeV and an energy resolution of 4.8% at 662 keV. Under moderated 252Cf irradiation, excellent neutron-gamma discrimination was achieved with a figure of merit (FoM) of 5.73, which is significantly higher than that of conventional CLYC:Ce scintillators. Spectroscopic studies show that Pr3+ causes much weaker self-absorption of host core-valence luminescence (CVL) than Ce3+, thereby preserving the ultrafast emission component. Meanwhile, CLYC:Pr exhibits both fast 4f5d→4f emission and slow 4f→4f emission, which further enlarges the waveform difference between γ-ray and neutron excitation. These results clarify the luminescence origin of the enhanced PSD behavior in CLYC:Pr and highlight the potential of Pr3+ activation for developing high-performance neutron-gamma scintillators.
| Original language | English |
|---|---|
| Article number | 122062 |
| Journal | Journal of Luminescence |
| Volume | 298 |
| DOIs | |
| Publication status | Published - Oct 2026 |
| Externally published | Yes |
Keywords
- CsLiYCl
- Neutron detection
- Pr luminescence
- Pulse shape discrimination
- Scintillator
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