Excited-State Absorption in ZBLAN:Er3+: Implications for a Diode-Pumped 3-µm Fiber Laser

M. Pollnau, C. Ghisler, W. Lüthy, H. Weber
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Abstract

Erbium-doped fluorozirconate (ZBLAN) fibers are promising candidates for the construction of compact and efficient all-solid-state 3-µm laser sources for surgical applications. Excited-state absorption (ESA) was found to have a major influence on the lasing properties of the erbium 3-µm transition in ZBLAN fibers. An approach has been suggested recently [1], which aims to avoid pump ESA and requires only low pump intensity, thus enabling high-power double-clad diode pumping of the erbium 3-µm fiber laser. However, the values of the relevant ESA cross-sections could not be determined experimentally so far. because the pump excitation is distributed between two metastable levels of erbium in ZBLAN, and ESA transitions from these two levels overlap in the spectral region of interest.
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ZBLAN:Er3+的激发态吸收:对二极管泵浦3µm光纤激光器的影响
掺铒氟锆酸盐(ZBLAN)光纤是构建用于外科应用的紧凑高效的全固态3 μ m激光源的有希望的候选材料。发现激发态吸收(ESA)对ZBLAN光纤中铒3-µm跃迁的激光特性有重要影响。最近提出了一种方法[1],该方法旨在避免泵浦ESA,只需要低泵浦强度,从而实现高功率双包层二极管泵浦3-µm铒光纤激光器。然而,有关欧空局截面的数值到目前为止还不能通过实验确定。因为泵浦激发分布在ZBLAN中的两个亚稳能级之间,并且这两个能级的ESA跃迁在感兴趣的光谱区域重叠。
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