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由金属有机框架实现的中红外光开关,用于紧凑型高功率3微米纳秒激光源。

Mid-infrared optical switches enabled by metal-organic frameworks for compact high-power nanosecond laser sources at 3 µm.

作者信息

Zheng Le, Wei Chen, Zhou Hongrong, Sun Fanxi, Gao Ang, Wang Dongsheng, Liu Yong

出版信息

Opt Express. 2022 Apr 11;30(8):12409-12419. doi: 10.1364/OE.455854.

DOI:10.1364/OE.455854
PMID:35472877
Abstract

Pulsed lasers operating in the mid-infrared are of great importance for numerous applications in spectroscopy, medical surgery, laser processing, and communications. In spite of recent advances with mid-infrared gain platforms, the lack of a capable pulse generation mechanism hinders the development of compact mid-infrared pulsed laser source. Here we show that MIL-68(Al) and MIL-68(Fe), which are aluminum- and iron- based metal-organic frameworks (MOFs) with ordered atoms distribution and periodic mesoporous structure, constitute exceptional optical switches for the mid-infrared. We fabricated the MIL-68(Al) and MIL-68(Fe) via hydrothermal method and prepared reflection-type MIL-68(Al)- and MIL-68(Fe)- saturable absorber mirrors (SAMs). By employing the as-prepared SAMs in the laser cavities, we achieved high-power nanosecond Q-switched fiber lasers at 2.8 µm. Especially, the average output power and pulse duration of the MIL-68(Al) Q-switched fiber laser reached 809.1 mW and 567 ns, respectively. To the best of our knowledge, this is the first time to demonstrate that MIL-68(M) can be efficient optical switches for 3-µm mid-IR laser pulses generation. Our findings reveal that MIL-68(M) is promising saturable absorber for compact and high-performance mid-infrared pulsed lasers.

摘要

工作在中红外波段的脉冲激光器在光谱学、医学手术、激光加工和通信等众多应用中具有重要意义。尽管近年来中红外增益平台取得了进展,但缺乏有效的脉冲产生机制阻碍了紧凑型中红外脉冲激光源的发展。在此,我们表明,MIL-68(Al)和MIL-68(Fe)这两种具有有序原子分布和周期性介孔结构的铝基和铁基金属有机框架(MOF)构成了用于中红外的特殊光开关。我们通过水热法制备了MIL-68(Al)和MIL-68(Fe),并制备了反射型MIL-68(Al)-和MIL-68(Fe)-可饱和吸收镜(SAM)。通过在激光腔中使用所制备的SAM,我们在2.8 µm处实现了高功率纳秒调Q光纤激光器。特别是,MIL-68(Al)调Q光纤激光器的平均输出功率和脉冲持续时间分别达到809.1 mW和567 ns。据我们所知,这是首次证明MIL-68(M)可以作为产生3 µm中红外激光脉冲的高效光开关。我们的研究结果表明,MIL-68(M)有望成为紧凑型高性能中红外脉冲激光器的可饱和吸收体。

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