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June 2, 2026Journal of the American Ceramic Society0 citations

Luminescence Analysis of Dy‐doped YPO 4 Glass Ceramics for Potential Use in Solid‐State Yellow Laser Technology

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HLHaiyang LuoHYHaodong Yue洪洪治

Key Points

  • To analyze the optical properties of Dy3+-doped YPO4 glass ceramics for potential laser applications.
  • Fabricated Dy3+-doped YPO4 glass-ceramics via controlled crystallization method.
  • Characterized heat-treatment temperature and phase morphology of the glass-ceramics.
  • Applied Judd-Ofelt theory for spectroscopic analysis of Dy3+ ions.
  • At 0.7 mol.% doping, Ω2 was calculated as 8.391 × 10−20 cm2.
  • The yellow emission fluorescence branching ratio β reached 68.6%.
  • Findings support Dy3+-doped YPO4 GC as a strong candidate for yellow solid-state laser materials.

Abstract

ABSTRACT Dy 3 + ‐doped yttrium aluminosilicate glasses and YPO 4 glass‐ceramics (GCs) were fabricated via the conventional controlled crystallization method. A systematic characterization was conducted on the heat‐treatment temperature, phase, and micro‐morphology of the GCs. Furthermore, the optical properties of the system were elucidated via quantitative analysis and theoretical fitting based on the fluorescence lifetime decay curves and transmission spectra. The Judd‐Ofelt theory was used for quantitative analysis of the spectroscopic properties of Dy 3 + ions, whose transition probabilities at the 4 F 9 / 2 excited level were measured under 451 nm blue light excitation. At 0.7 mol.% doping, Ω 2 was calculated as 8.391 × 10 − 2 0 cm 2 , with the yellow emission fluorescence branching ratio β reaching 68.6%. These findings confirm that Dy 3 + ‐doped YPO 4 GC is a highly promising high‐performance solid‐state laser material for the yellow spectral band, applicable to fabricating and developing solid‐state lasers.

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Cite This Study

Luo et al. (2026) studied this question.

synapsesocial.com/papers/6a1e734530b38c64201b6866https://doi.org/10.1111/jace.70906
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