材料科学
激光器
热导率
热膨胀
Crystal(编程语言)
分析化学(期刊)
单晶
激光二极管
发光
光电子学
二极管
光学
结晶学
化学
物理
色谱法
计算机科学
冶金
复合材料
程序设计语言
作者
Zhengli Liang,Yuchao Li,Qin Chen,Ran Zhang,Youquan Liu,Xingxing Jiang,Guochun Zhang,Zheshuai Lin
标识
DOI:10.1021/acs.cgd.4c01336
摘要
Laser crystals, serving as the laser gain medium, are key materials in all-solid-state lasers. Due to considerable thermal expansion and low thermal conductivity, the performance of conventional laser crystals strongly depends on thermal management systems to improve the laser quality and power, which inevitably restricts the development of laser technology. In this work, a new potential laser crystal of Mn2+-doped Zn4B6O13 (ZBO) with a low thermal expansion and high thermal conductivity was grown and characterized. The strong luminescence emission at 539 nm in ZBO:Mn2+ was observed, with a long lifetime of 16.20(7) ms, and the corresponding absorption bands in the range of 410–460 nm fall within the spectra of GaN- or InGaN-based laser diodes. In variable-temperature fluorescence spectra, promoted by relaxation on the parity-forbidden 4T1-to-6A1 transition from the increased phonon number, an abnormal negative thermal quenching was manifested below 140 K, with the lifetime consistently greater than 10 ms over the whole temperature range of 80–500 K. Meanwhile, ZBO:Mn2+ manifests very low thermal expansion (3.1 MK–1) and high thermal conductivity (27.44(6) W/(m·K)) at room temperature (300 K). These excellent thermal properties, combined with good optical properties, make ZBO:Mn2+ an outstanding gain medium for green laser generation. Our study confirms that ZBO is a promising laser matrix crystal.
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