材料科学
镱
铒
光纤激光器
光纤
光学
光电子学
激光器
波长
石英纤维
波分复用
掺铒光纤放大器
纤维
色散位移光纤
集成光学
对偶(语法数字)
保偏光纤
光纤布拉格光栅
分布反馈激光器
塑料光纤
光抽运
光子晶体光纤
光通信
芯(光纤)
可调谐激光器
半导体激光器理论
光纤传感器
激光束
相位调制
光学滤波器
折射率
零色散波长
光放大器
渐变折射率纤维
作者
I. Bartoň,P. Peterka,Martin Grabner,Jan Aubrecht,Michal Kamrádek,O. Podrazký,Petr Vařák,Dariusz Pysz,Marcin Franczyk,Rafał Kasztelanic,Ryszard Buczyński,Ivan Kašík
标识
DOI:10.1109/jlt.2026.3679115
摘要
We report on a novel type of dual-wavelength fiber laser with a structured-core design inside silica glass, forming a spatial separation of the several core areas doped with ytterbium and erbium ions. We have optimised the key parameters of the fiber core, such as the concentration of rare earth elements, and the optimal length of active fiber to operate simultaneously at two different wavelengths. Using the Modified Chemical Vapor Deposition method to obtain initial optical fiber preforms, and using the stack and draw technique, we have fabricated two types of active fibers, one with 7 and one with 19 rare-earth-doped rods (elements) forming the fiber core. We characterized the drawn fibers by investigating their structure by scanning electron microscopy, confirming the spatial separation of the elements within the core. Measuring absorption shows that concentration ratios NtYb: NtEr were approximately 52: 48 for 7 core fibers and 56:44 for 19 core fibers. Lifetimes for both active fibers were 0.84 ms for Yb3+ ion and 10.30 ms for Er3+ ion. The performance of fiber lasers was determined, proving that fibers are capable of laser emission simultaneously at 1042 nm and 1550 nm. We have shown experimentally that the output power ratio between both lasing wavelengths can be controlled by the length of the fiber.
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