材料科学
激光器
波长
远红外激光器
光学
红外线的
铒
光电子学
兴奋剂
物理
作者
Youbao Sang,Dong Liu,Xusheng Xia,BaiChao Zhang,Pengyuan Wang,Ying Chen,Zhiyi Xu,Wanfa Liu,Jingwei Guo,Fengting Sang
标识
DOI:10.1016/j.optcom.2020.126667
摘要
Highly doped erbium crystals have complex fine energy levels, which can be used to emit lasers of different wavelengths under different conditions. The mid-infrared multi-wavelength laser of erbium ions has not yet achieved stable laser emission. In this study, the rate equation is used, with consideration of mode competition, to design a mid-infrared Er:YAG pulsed laser that emits four wavelengths at room temperature. The gain of the multi-wavelength erbium laser is related to the Boltzmann distribution coefficient. Based on this, the conditions for multi-wavelength output have been calculated and verified in experiments. A four-wavelength stable output mid-infrared pulsed laser based on Er:YAG was produced. This laser may be applied to remote sensing or gas detection.
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