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首页|期刊导航|无机材料学报|Dy:Y2SiO5和Dy,Tb:Y2SiO5单晶生长与黄光发射光谱性能

Dy:Y2SiO5和Dy,Tb:Y2SiO5单晶生长与黄光发射光谱性能

刘宇霄 梁飞

无机材料学报2026,Vol.41Issue(7):930-938,9.
无机材料学报2026,Vol.41Issue(7):930-938,9.DOI:10.15541/jim20250380

Dy:Y2SiO5和Dy,Tb:Y2SiO5单晶生长与黄光发射光谱性能

Growth and Yellow Emission Spectral Properties of Dy:Y2SiO5 and Dy,Tb:Y2SiO5 Single Crystals

刘宇霄 1梁飞1

作者信息

  • 1. 山东大学 晶体材料研究院,晶体材料全国重点实验室,济南 250100
  • 折叠

摘要

Abstract

Yellow laser sources in the range of 570-590 nm have many important applications in frontier fields such as flow cytometry,sodium guide star,and ophthalmic surgery.Yellow laser output from blue laser diode-pumped Dy3+-doped crystals is a promising technology with advantages of high efficiency,compactness,and high power stability.However,Dy3+-doped laser crystals mainly focused on low-phonon-energy fluorides,while the high-phonon-energy oxides were rarely studied.Herein,high-quality Dy3+-doped and Dy3+,Tb3+co-doped Y2SiO5(YSO)crystals were grown by the optical floating zone method.The yellow emission and energy transfer processes in Dy:YSO and Dy,Tb:YSO crystals were investigated.Compared with Dy:YSO,the absorption cross-section of Dy,Tb:YSO at 450 nm increases from 1.75×10-21 cm2 to 2.21×10-21 cm2,and the yellow emission cross-section at 574 nm increases from 3.45×10-21 cm2 to 4.32×10-21 cm2.In addition,the co-doped Tb3+ions act as deactivator ions and the energy transfer efficiency from 6H13/2 level of Dy3+to 7F4 level of Tb3+is 50.7%.As a result,the lifetime of Dy3+lower level is greatly shortened to 202.9 µs,which is favorable for population inversion and yellow laser output.These results indicate that Dy,Tb:YSO crystal is a promising yellow laser gain medium.

关键词

Dy:YSO/Dy,Tb:YSO/黄光激光/晶体生长

Key words

Dy:YSO/Dy,Tb:YSO/yellow laser/crystal growth

分类

化学化工

引用本文复制引用

刘宇霄,梁飞..Dy:Y2SiO5和Dy,Tb:Y2SiO5单晶生长与黄光发射光谱性能[J].无机材料学报,2026,41(7):930-938,9.

基金项目

国家重点研发计划(2023YFF0718801,2021YFA0717800) (2023YFF0718801,2021YFA0717800)

国家自然科学基金(52372010,52422201)National Key Research and Development Program of China(2023YFF0718801,2021YFA0717800) (52372010,52422201)

National Natural Science Foundation of China(52372010,52422201) (52372010,52422201)

无机材料学报

1000-324X

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