Review of the Yb3+:ScBO3 Laser Crystal Growth, Characterization, and Laser Applications

Review of the Yb3+:ScBO3 Laser Crystal Growth, Characterization, and Laser Applications
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Yb3:ScBO3 激光晶体生长、表征和激光应用综述

DOI:
10.3390/app112210879
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发表时间:
2021-11
期刊:
影响因子:
--
通讯作者:
Jiyang Wang
Jiyang Wang
中科院分区:
--
文献类型:
--
作者:
Dazhi Lu;Xiaoheng Li;Haohai Yu;Huaijin Zhang;Jiyang Wang

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被动调Q因其紧凑且无需额外调制的设计而成为产生脉冲激光的有效方法。然而,为了与有源调Q和多级放大相媲美,实际应用中需要增强输出能量。 Kramers掺镱离子(Yb3+)硼酸盐晶体具有出色的能量存储能力,已被证明是利用被动调Q技术实现中等和高输出能量的脉冲激光器的高潜力激光增益介质。在这项研究中,系统地回顾了一种 Yb3+ 掺杂硼酸盐晶体(Yb3+:ScBO3 晶体)的生长、表征和激光产生。详细介绍了连续波和被动调Q激光器的特性,并演示了由本征基态重吸收产生的自脉动。具体特性和实验证实了 Yb3+:ScBO3 晶体在未来中等甚至高能量输出的脉冲激光应用中的潜力。
Passive Q-switching is an effective approach for generating pulsed lasers, owing to its compact and additional modulation-free design. However, to compare favorably with active Q-switching and multi-stage amplification, the output energy needs to be enhanced for practical applications. Kramers Ytterbium ion (Yb3+)-doped borate crystals, with their excellent energy storage capacity, have been proven to be high-potential laser gain mediums for achieving pulsed lasers with moderate and high output energy using passive Q-switching technology. In this study, the growth, characterization, and laser generation of one Yb3+-doped borate crystal, the Yb3+:ScBO3 crystal, are systematically reviewed. The continuous-wave and passive Q-switching laser characteristics are presented in detail, and the self-pulsations derived from intrinsic ground-state reabsorption are also demonstrated. The specific characteristics and experiments confirm the potential of the Yb3+:ScBO3 crystal for future pulsed laser applications with moderate or even high energy output.
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