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Enhancement of UV laser-induced damage resistance of the fluoride-containing phosphate glasses by regulating the intrinsic defects
Li, Shengwu1,2; Wan, Rui1,2; Ma, Yuan1,2; Wang, Pengfei1,2
作者部门先进光电与生物材料研究室
发表期刊JOURNAL OF THE AMERICAN CERAMIC SOCIETY
ISSN0002-7820;1551-2916
产权排序1
摘要

Low fluorine content containing fluorophosphate glasses have promising potential as ultraviolet (UV) optics to be used in high-energy laser systems. Systematic studies on the iron-doped and iron-free fluoride-containing phosphate glasses that were prepared at high and low melting temperatures explore the underlying interrelationship among the glass preparation conditions, intrinsic defects in produced glasses, and the anti-laser-damage properties. For the iron-doped fundamental frequency (1 omega) absorptive glass, melting at high-temperature (1200 degrees C) can reduce the extrinsic "impurity" concentration of Fe3+ ions, resulting in tiny increase of optical bandgap (by 1.6%) but significant reduce of the absorption coefficient by 34% at 355 nm. However, only tiny increase of the laser-induced damage threshold (LIDT) was achieved. For the iron-free third harmonic frequency (3 omega) transparent glass, low-temperature (1000 degrees C) melting process significantly reduced the absorptive intrinsic defects content of PO3-EC, PO4-EC, and phosphorous oxygen-bonded hole center defects, which made the UV absorption edge blue-shifted by 50 nm and the optical bandgap increased by similar to 18%. The UV (355 nm) LIDT was significantly enhanced by similar to 27%. Much lower absorption coefficient and larger bandgap of the iron-free glass relative to the iron-doped one endow it with larger a LIDT. In short, optimizing the glass melting temperature is a feasible method to enhance the UV laser-induced damage resistance of the fluoride-containing phosphate glasses through controlling the content of the extrinsic or intrinsic defects in produced glasses. The general routine is to achieve both the lower UV absorptive defect concentration (i.e., lower UV absorption at 355 nm) and the lower non-bridged oxygen ratio (i.e., denser glass network), as well as a larger optical bandgap (i.e., reduced probability of avalanche ionization breakdown), which together contribute to the enhancement of the anti-laser-damage performance of the investigated fluoride-containing phosphate glasses.

关键词defects fluoride-containing phosphate glass photoluminescence Raman spectroscopy
DOI10.1111/jace.18255
收录类别SCI ; EI
语种英语
WOS记录号WOS:000729273000001
出版者WILEY111 RIVER ST, HOBOKEN 07030-5774, NJ
EI入藏号20215011322971
引用统计
被引频次:5[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.opt.ac.cn/handle/181661/95597
专题光子功能材料与器件研究室
通讯作者Wang, Pengfei
作者单位1.Chinese Acad Sci, State Key Lab Transient Opt & Photon, Xian Inst Opt & Precis Mech, Xian 710119, Shaanxi, Peoples R China
2.Univ Chinese Acad Sci, Ctr Mat Sci & Optoelect Engn, Beijing, Peoples R China
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Li, Shengwu,Wan, Rui,Ma, Yuan,et al. Enhancement of UV laser-induced damage resistance of the fluoride-containing phosphate glasses by regulating the intrinsic defects[J]. JOURNAL OF THE AMERICAN CERAMIC SOCIETY.
APA Li, Shengwu,Wan, Rui,Ma, Yuan,&Wang, Pengfei.
MLA Li, Shengwu,et al."Enhancement of UV laser-induced damage resistance of the fluoride-containing phosphate glasses by regulating the intrinsic defects".JOURNAL OF THE AMERICAN CERAMIC SOCIETY
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