Spectroscopic characterization and diode-pumped laser action at 2.7μm of Er:Lu2O3

V. Peters, L. Fornasiero, E. Mix, A. Diening, K. Petermann, G. Huber
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引用次数: 4

Abstract

The sesquioxide Lu2O3 (Lutetia) is isostructural to the comparatively well examined Y2O3 (Yttria). Therefore the thermal conductivity of Lutetia is assumed to be in the same high range as in Yttria (27 W/mK [1]), which makes Lutetia an interesting host material for high power lasing. Due to its high melting point (around 2500°C) is was impossible to grow Lutetia from crucibles in the past so that size and optical quality of existing samples were limited. We have, for the first time to our knowledge, grown Lutetia doped with RE3+-ions from rhenium crucibles using the Nacken-Kyropoulos technique. First samples show monocrystalline regions with rather low stress induced birefringence.
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光谱表征和二极管泵浦激光作用在2.7μm Er:Lu2O3
倍半氧化物Lu2O3 (Lutetia)与相对较好的Y2O3 (ytriia)是同结构的。因此,假定黄体的热导率与钇的热导率处于相同的高范围(27 W/mK[1]),这使黄体成为高功率激光的有趣宿主材料。由于其高熔点(约2500°C),过去不可能从坩埚中生长黄体,因此现有样品的尺寸和光学质量受到限制。据我们所知,我们第一次用Nacken-Kyropoulos技术从铼坩埚中获得了掺杂RE3+离子的Lutetia。第一个样品显示单晶区域具有较低的应力诱导双折射。
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