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Fabrication and Optical Properties of High‐Performance Polycrystalline Nd:YAG Ceramics for Solid‐State Lasers

Journal of the American Ceramic Society · 1995 · Vol. 78(4) · pp. 1033–1040
Akio IkesueToshiyuki KinoshitaKiichiro KamataKunio Yoshida

Abstract

Transparent polycrystalline YAG with nearly the same optical characteristics as those of a single crystal were fabricated by a solid‐state reaction method using high‐purity powders (>99.99 wt% purity). The average grain size and relative density of the 1.1 at.% Nd:YAG ceramics obtained were about 50 μm and 99.98%, respectively. An oscillation experiment was performed on a cw laser by the diode laser excitation system using the fabricated ceramics. The experimental results indicated an oscillation threshold and a slope efficiency of 309 mW and 28%, respectively. These values were equivalent or superior to those of the 0.9 at.% Nd:YAG single crystal fabricated by the Czochralski method.

Solid State Laser TechnologiesPhotorefractive and Nonlinear OpticsGlass properties and applicationsMaterials scienceCeramicCrystalliteLaserFabricationSlope efficiencyDiodeOptoelectronicsGrain sizeCrystal (programming language)
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Fabrication and Optical Properties of High‐Performance Polycrystalline Nd:YAG Ceramics for Solid‐State Lasers · Scinovex