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ICCK Publications

Total Publications: 2
Open Access | Research Article | 26 February 2026
High Luminous Efficacy and Thermal Stability of LuAG:Ce Phosphor Ceramics with Porosity for High-brightness Laser Lighting
Journal of Advanced Materials Research | Volume 2, Issue 2: 86-96, 2026 | DOI: 10.62762/JAMR.2026.672409
Abstract
The generation of high-brightness white light in laser-illuminated devices is achieved by exciting yellow-green phosphors with a blue laser source. This configuration offers advantages such as high energy density and strong central luminous intensity. Among luminescent materials, LuAG:Ce phosphor ceramics (PCs) are notable for their high thermal stability and luminous output. In this study, LuAG:Ce PCs were produced from co-precipitated monophase nanopowders. The effects of vacuum sintering and air annealing temperatures on their porosity and luminescent properties were investigated. The sample, sintered at 1550°C and subsequently annealed at 1350°C, exhibited 3.5 vol.% porosity, highest r... More >

Graphical Abstract
High Luminous Efficacy and Thermal Stability of LuAG:Ce Phosphor Ceramics with Porosity for High-brightness Laser Lighting
Open Access | Research Article | 20 December 2025
Highly Transparent Sm:LuAG Ceramics for Cladding Fabricated by Solid-state Reactive Sintering
Journal of Advanced Materials Research | Volume 1, Issue 1: 6-17, 2025 | DOI: 10.62762/JAMR.2025.567536
Abstract
In solid-state laser systems with nanosecond repetition rates and high energy, amplified spontaneous emission (ASE) and parasitic oscillation (PO) produced by the gain material can significantly impact the laser output. A well-designed cladding composite structure is an effective solution to absorb ASE and suppress PO. In this work, 5 at.% Sm:LuAG transparent ceramics, a promising cladding material for suppressors of PO at 1064 nm of Nd:LuAG lasers, have been prepared by solid-state reactive sintering at 1825 °C followed by hot isostatic pressing (HIP) post-treatment at 1750 °C. The influences of TEOS (tetraethyl orthosilicate) content on microstructure evolution, in-line transmittance of... More >

Graphical Abstract
Highly Transparent Sm:LuAG Ceramics for Cladding Fabricated by Solid-state Reactive Sintering