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双功能掺钕LGSB晶体:近红外和绿色领域晶体生长及激光发射性能提升路线图

Bifunctional Nd-Doped LGSB Crystals: A Roadmap for Crystal Growth and Improved Laser Emission Performance in the NIR and Green Domains.

作者信息

Broasca Alin, Greculeasa Madalin, Voicu Flavius, Gheorghe Cristina, Hau Stefania, Susala Catalina Alice, Gheorghe Lucian

机构信息

National Institute for Laser, Plasma and Radiation Physics, 077125 Magurele, Romania.

出版信息

Materials (Basel). 2025 Feb 21;18(5):964. doi: 10.3390/ma18050964.

Abstract

Herein we present a roadmap for tailoring the crystal growth conditions, near-infrared (NIR) laser emission, and self-frequency doubling (SFD) performances of newly developed Nd-doped LaGdSc(BO) (Nd:LGSB) crystals. Three different Nd doping concentrations of 2.3 at.%, 3.5 at.%, and 4.6 at.% were investigated. Considering their incongruent melting, special conditions were employed for the growth using the Czochralski technique. Laser emission performances at 1062 nm in the CW regime were evaluated for uncoated crystal samples with different orientations (-cut, -cut, and SFD-cut). The highest slope efficiency η = 0.68 was obtained for the 4.6 at.% -cut Nd:LGSB crystal, with a randomly polarized emission. The -cut 4.6 at.% Nd:LGSB crystal delivered a linearly polarized beam with a slope efficiency η = 0.63. The SFD-cut 2.3 at.% and 3.5 at.% Nd:LGSB crystals achieved slightly lower efficiencies of ~ 0.56. The SFD capabilities of 2.3 at.% and 3.5 at.% Nd:LGSB crystals were also explored. Green laser emission at ~531 nm was achieved with a diode-to-green conversion efficiency increasing significantly from 0.17% to 1.44%, respectively. These results demonstrate that the Nd-doping concentration, crystal orientation, and sample length of Nd:LGSB crystals, must be carefully selected depending on the specific requirements of the intended application.

摘要

在此,我们提出了一种路线图,用于调整新开发的掺钕钇铝石榴石(Nd:LGSB)晶体的晶体生长条件、近红外(NIR)激光发射和自倍频(SFD)性能。研究了三种不同的钕掺杂浓度,分别为2.3原子百分比、3.5原子百分比和4.6原子百分比。考虑到它们的不一致熔化特性,采用了特殊条件,利用提拉法进行晶体生长。对不同取向(-切割、-切割和SFD切割)的未镀膜晶体样品,评估了其在连续波模式下1062nm处的激光发射性能。对于4.6原子百分比的-切割Nd:LGSB晶体,获得了最高的斜率效率η = 0.68,发射为随机偏振。4.6原子百分比的-切割Nd:LGSB晶体输出线偏振光束,斜率效率η = 0.63。SFD切割的2.3原子百分比和3.5原子百分比的Nd:LGSB晶体效率略低,约为0.56。还探索了2.3原子百分比和3.5原子百分比的Nd:LGSB晶体的SFD能力。在约531nm处实现了绿色激光发射,二极管到绿色的转换效率分别从0.17%显著提高到1.44%。这些结果表明,必须根据预期应用的具体要求,仔细选择Nd:LGSB晶体的钕掺杂浓度、晶体取向和样品长度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab67/11901289/b3e99b26c76f/materials-18-00964-g005.jpg

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