Effect of Zirconium Content on Defect Structure and Light Damage Resistance of Zr:Dy:LiNbO3 Crystals

IF 1.5 4区 材料科学 Q3 Chemistry Crystal Research and Technology Pub Date : 2024-03-11 DOI:10.1002/crat.202300255
Li Dai, Lin Zhang, Houliang Wang, Ning Lai
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Abstract

In this paper, Zr:Dy:LiNbO3 crystals are prepared by traditional pull-up method, in which Zr4+ doping concentrations are 0, 1, 2, and 4 mol%, respectively. In this paper, the defective structure of Zr:Dy:LiNbO3 crystals and their resistance to photodamage under different Zr4+ concentration doping are studied. Firstly, the influence of Zr4+ doping concentration on the defective structure of Zr:Dy:LiNbO3 crystal and the occupancy of doped ions under different Zr4+ concentrations are tested and discussed by infrared (IR) absorption spectroscopy and ultraviolet-visible near-infrared (UV–vis–NIR) absorption spectroscopy. The Judd–Ofelt theoretical analysis results show that when the concentration of doped Zr4+ is 2 mol%, the spectral quality factor (X) of Dy3+ in lithium niobate crystals is significantly improved compared with that of Dy3+ in other crystals. Secondly, resistance to photodamage of Zr:Dy:LiNbO3 crystals is studied and analyzed by the light scattering exposure energy flow threshold method. The results show that when the concentration of doped Zr4+ ions reaches 4 mol%, the exposure energy value is increased by 210 times compared with the no doping, which greatly improves the anti-photodamage performance of the crystal.

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锆含量对 Zr:Dy:LiNbO3 晶体缺陷结构和抗光损伤性的影响
本文采用传统的上拉法制备了 Zr:Dy:LiNbO3 晶体,其中 Zr4+ 的掺杂浓度分别为 0、1、2 和 4 mol%。本文研究了不同 Zr4+ 掺杂浓度下 Zr:Dy:LiNbO3 晶体的缺陷结构及其抗光损伤性能。首先,通过红外吸收光谱和紫外可见近红外吸收光谱测试和讨论了掺杂浓度 Zr4+ 对 Zr:Dy:LiNbO3 晶体缺陷结构的影响以及不同 Zr4+ 浓度下掺杂离子的占有率。Judd-Ofelt 理论分析结果表明,当掺杂 Zr4+ 的浓度为 2 mol% 时,铌酸锂晶体中 Dy3+ 的光谱品质因数 (X) 与其他晶体中 Dy3+ 的光谱品质因数 (X) 相比有显著提高。其次,采用光散射曝光能量流阈值法研究分析了 Zr:Dy:LiNbO3 晶体的抗光损伤能力。结果表明,当掺杂的 Zr4+ 离子浓度达到 4 mol% 时,曝光能值比不掺杂时提高了 210 倍,从而大大提高了晶体的抗光损伤性能。
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来源期刊
CiteScore
2.50
自引率
6.70%
发文量
121
审稿时长
1.9 months
期刊介绍: The journal Crystal Research and Technology is a pure online Journal (since 2012). Crystal Research and Technology is an international journal examining all aspects of research within experimental, industrial, and theoretical crystallography. The journal covers the relevant aspects of -crystal growth techniques and phenomena (including bulk growth, thin films) -modern crystalline materials (e.g. smart materials, nanocrystals, quasicrystals, liquid crystals) -industrial crystallisation -application of crystals in materials science, electronics, data storage, and optics -experimental, simulation and theoretical studies of the structural properties of crystals -crystallographic computing
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Issue Information: Crystal Research and Technology 2'2025 Issue Information: Crystal Research and Technology 1'2025 Approaching Six Decades! Research Progress on Stability of FAPbI3 Perovskite Solar Cells Molecular Simulations of Stereocomplex Crystallization in Grafted Diblock Copolymers
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