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用于高能调Q脉冲产生的少层金属硫族化合物可饱和吸收体。

Few-layer metal monochalcogenide saturable absorbers for high-energy Q-switched pulse generation.

作者信息

Zhang Mengyu, Chen Hao, Wang Jintao, Wang Zhiyang, Zhang Jiaqiang, Li Junzi, He Tingchao, Yin Jinde, Yan Peiguang, Ruan Shuangchen

机构信息

Shenzhen Key Laboratory of Laser Engineering, College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, People's Republic of China.

出版信息

Nanotechnology. 2020 May 15;31(20):205204. doi: 10.1088/1361-6528/ab7251. Epub 2020 Feb 3.

Abstract

Two-dimensional layered materials have been widely utilized as nonlinear absorption materials to transfer continue-wave into pulse trains in fiber laser systems. Here, we prepare robust GaSe/GeSe composites with high power bearing capacity as saturable absorbers (SAs) and then investigate their nonlinear optical properties via broadband Z-scan measurement at 800 nm and 1550 nm, respectively. The modulation depths of GaSe/GeSe based SAs are measured to be 11.97% and 7.69% at 1550 nm. After incorporating the GaSe/GeSe SAs into an Erbium-doped fiber laser cavity, passively Q-switched pulse trains could be obtained with repetition rates changing from 83.58 to 136.78 kHz (70.41 to 161.65 kHz). The maximum output power and pulse energy are 52.1 mW/370.67 nJ (GaSe) and 21.6 mW/133.74 nJ (GeSe) under the maximum pump power of 600 mW. The results indicate that GaSe and GeSe possess outstanding thermal stability and could be employed as remarkable saturable absorption materials for high-energy pulses generation.

摘要

二维层状材料已被广泛用作非线性吸收材料,用于在光纤激光系统中将连续波转换为脉冲序列。在此,我们制备了具有高功率承载能力的稳健的GaSe/GeSe复合材料作为可饱和吸收体(SAs),然后分别通过在800 nm和1550 nm处的宽带Z扫描测量来研究它们的非线性光学性质。基于GaSe/GeSe的SAs在1550 nm处的调制深度测量为11.97%和7.69%。将GaSe/GeSe SAs纳入掺铒光纤激光腔后,可获得重复频率从83.58到136.78 kHz(70.41到161.65 kHz)变化的被动调Q脉冲序列。在600 mW的最大泵浦功率下,最大输出功率和脉冲能量分别为52.1 mW/370.67 nJ(GaSe)和21.6 mW/133.74 nJ(GeSe)。结果表明,GaSe和GeSe具有出色的热稳定性,可作为用于产生高能脉冲的优异可饱和吸收材料。

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