Site Selective Excitation and Upconversion in Er3+:KLiYF5

Adam Smith, N. Manson, A. J. Silversmith, R. Henderson
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Abstract

KLiYF5 is a promising new laser host crystal. Nd3+:KLiYF5 forms the basis of a low threshold infrared laser1, and has also been characterized for its potential as an upconversion laser.2 We have measured the low temperature excitation and emission spectra of a single crystal of 1% Er3+: KLiYF5. The rare earth ions reside in two similar but optically separable sites. The similarity of the centers is obvious because of one to one correlation in the number of spectral lines, similar strengths and polarisations of transitions, and very small shifts in energy (typically less than 10cm1) between corresponding levels. Selective excitation and emission experiments have been performed using a pulsed tunable dye laser in the wavelength range 450nm to 700nm. With a combination of excitation and emission experiments, positions of all levels below 25,000cm-1 have been determined. Lifetimes relevant to the upconversion work have been measured.
Er3+:KLiYF5的选择性激发和上转换
KLiYF5是一种很有前途的新型激光主体晶体。Nd3+:KLiYF5形成了低阈值红外激光器的基础1,并且也因其作为上转换激光器的潜力而被表征我们测量了1% Er3+: KLiYF5单晶的低温激发和发射光谱。稀土离子位于两个相似但光学上可分离的位置。这些中心的相似性是显而易见的,因为光谱线的数量是一对一的相关关系,相似的强度和跃迁的极化,以及相应能级之间非常小的能量位移(通常小于10cm2)。在450nm ~ 700nm波长范围内,利用脉冲可调谐染料激光器进行了选择性激发和发射实验。结合激发和发射实验,确定了25000 cm-1以下各能级的位置。测量了与上转换工作相关的寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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