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Ho:BaF2晶体在近红外-中红外波段光谱性能分析

钱新宇 董永军 华伟 徐军 王无敌 郭俊尧 任永春 董建树 王庆国 唐慧丽 张晨波 徐晓东

无机材料学报2026,Vol.41Issue(5):595-603,9.
无机材料学报2026,Vol.41Issue(5):595-603,9.DOI:10.15541/jim20250349

Ho:BaF2晶体在近红外-中红外波段光谱性能分析

Spectroscopic Analysis of Ho:BaF2 Crystals in the NIR to MIR Spectral Region

钱新宇 1董永军 2华伟 3徐军 1王无敌 1郭俊尧 1任永春 1董建树 1王庆国 1唐慧丽 1张晨波 1徐晓东4

作者信息

  • 1. 同济大学 高等研究院,物理科学与工程学院,先进微结构材料教育部重点实验室,上海 200092
  • 2. 上海芯飞睿科技有限公司,上海 300444
  • 3. 宁波镭晶科技有限公司,宁波 315500
  • 4. 江苏师范大学 物理与电子工程学院,江苏省先进激光材料与器件重点实验室,徐州 221116
  • 折叠

摘要

Abstract

Infrared lasers in the 1-3 μm region are increasingly important for applications in medical treatment,atmospheric monitoring,and high-power laser systems.Holmium ions(Ho3+)are particularly attractive because of their multiple emission channels covering near to mid infrared ranges.This work aims to systematically evaluate the structural and spectroscopic properties of Ho:BaF2 crystals and determine the optimal doping concentrations for efficient multi-band laser operation.High-quality Ho:BaF2 single crystals with concentrations of 0.5%-3.0%(in atom)were grown using the temperature gradient technique(TGT).Structural characterization was performed,while spectroscopic properties were analyzed via absorption,fluorescence,and lifetime measurements.Judd-Ofelt analysis was further applied to calculate radiative parameters.All samples exhibited cubic structures,with doping segregation ratios close to unity and uniform Ho3+distribution.Spectroscopic evaluation revealed optimal doping concentrations of 2.0%(in atom)for~1.2 μm(5I6→5I8,spectral quality factor Q=24.29×10-21 cm2·ms)and~2.05 μm(5I7→5I8,Q=67.53×10-21 cm2·ms),and 1.0%(in atom)for~2.85 μm(5I6→5I7,Q=44.52×10-21 cm2·ms).BaF2 host,with its low phonon energy(~346 cm-1)and anti-clustering characteristics,enabled enhanced emission performance,including a maximum emission cross-section of 3.81×10-21 cm2 at~2.05 μm.These results outperform traditional hosts such as YAG and CaF2.Compared to oxide hosts,BaF2 offers superior lifetime,reduced non-radiative losses,and greater resistance to concentration quenching.The findings indicate that Ho:BaF2 supports higher effective doping levels,making it particularly promising for high-power and ultrafast laser applications.Ho:BaF2 crystals demonstrate excellent potential as efficient,multi-wavelength infrared laser gain media.

关键词

氟化钡晶体/Ho3+离子掺杂/中红外激光/光谱性能

Key words

BaF2 crystal/Ho3+doping/mid-infrared laser/spectroscopic characteristic

分类

化学化工

引用本文复制引用

钱新宇,董永军,华伟,徐军,王无敌,郭俊尧,任永春,董建树,王庆国,唐慧丽,张晨波,徐晓东..Ho:BaF2晶体在近红外-中红外波段光谱性能分析[J].无机材料学报,2026,41(5):595-603,9.

基金项目

国家重点研发计划(2022YFB3605701,2023YFB3507401) (2022YFB3605701,2023YFB3507401)

国家自然科学基金(62275198,52032009)National Key R&D Program of China(2022YFB3605701,2023YFB3507401) (62275198,52032009)

National Natural Science Foundation of China(62275198,52032009) (62275198,52032009)

无机材料学报

1000-324X

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