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Thermal, chemical, optical properties and structure of Er-doped and Er/Yb-codoped P2O5-Al2O3-ZnO glasses
Authors:SW Yung  SM Hsu  KL Hsu  HI Hsiang
Institution:
  • a Department of Materials Science and Engineering, National United University, Miao-Li, 36003, Taiwan
  • b Department of Biomedical Imaging and Radiological Science, China Medical University, Taichung, Taiwan
  • c Department of Materials Science and Engineering, Feng Chia University, Taichung, Taiwan
  • d Department of Materials Science and Engineering, National Cheng Kung University, Tainan, Taiwan
  • Abstract:This study was explored in series of the optical, thermal, and structure properties based on 60P2O5-10Al2O3-30ZnO (PAZ) glasses system that doped with varied rare-earth (RE) elements Yb2O3/Er2O3. The glass transition temperature, softening temperature and chemical durability were increased with RE-doping concentrations increasing, whereas thermal expansion coefficient was decreased. In the optical properties, the absorption and emission intensities also increase with RE-doping concentrations increasing, When Er2O3 and Yb2O3 concentrations are over than 3 mol% in the Er3+-doped PAZ system and Yb3+-doped concentration is over than 3 mol% for Er3+/Yb3+-codoped PAZ system, the emission intensity significantly decreases presumably due to concentration quenching, formation of the ions clustering, and OH groups in the glasses network. It is suggested that the maximum emission cross-section (σe) is 7.64 × 10− 21 cm2 at 1535 nm is observed for 3 mol% Er3+-doped PAZ glasses. Moreover, the maximum σe × full-width-at-half-maximum is 327.8 for 5 mol% Er3+-doped PAZ glasses.
    Keywords:Phosphate glass  Er3+/Yb3+-codoping  Fluorescence  Absorption cross-section  Emission cross-section
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