材料科学
超细纤维
耗散孤子
饱和吸收
光纤激光器
光电子学
超短脉冲
激光器
孤子
耗散系统
光学
硫系化合物
超连续谱
光子晶体光纤
非线性系统
波长
物理
量子力学
复合材料
作者
Lihui Pang,Meng Zhao,Qiyi Zhao,Lu Li,Rongfeng Wang,Rongqian Wu,Yi Lv,Wenjun Liu
标识
DOI:10.1021/acsami.2c17738
摘要
Nanotechnology is at the forefront of scientific research and offers great prospects for the development of technology. As a type of III-V semiconductor, GaSb materials exhibit numerous outstanding optical and electrical characteristics that are very promising for nonlinear optical device applications. In this study, the electronic band structures of GaSb are theoretically calculated, and its application in dissipative soliton fiber lasers is validated. A GaSb thin film is deposited on a microfiber using magnetron sputtering deposition, and the morphology, chemical composition, structure, and nonlinear optical characteristics of the proposed microfiber-GaSb device are investigated. After incorporating it into an Er-doped fiber laser, dissipative soliton laser pulses are readily obtained with a fundamental frequency of 43.5 MHz. With increasing pump power, the fiber laser could work in the fundamental frequency mode-locking state. At a pump power of 570 mW, the pulse width and the output power are measured to be 917 fs and 49.75 mW, separately. These results reveal that GaSb can be used as an efficient saturable absorber, which will have potential applications in ultrafast optics.
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