Püschel Stefan, Kalusniak Sascha, Kränkel Christian, Tanaka Hiroki
Opt Express. 2021 Mar 29;29(7):11106-11120. doi: 10.1364/OE.422535.
We revisit the spectroscopic characterization of ytterbium-doped LiYF (Yb:YLF) for the application of laser cooling. Time-dependent fluorescence spectroscopy reveals a temperature dependence of the radiative lifetime which we explain by the Boltzmann distribution of excited ions in the upper Stark levels. The emission cross sections of Yb:YLF from 17 K to 440 K are revised using the temperature-dependent radiative lifetimes from fluorescence spectra. We provide fit equations for the peak values of important transitions as a function of temperature, which is also useful for the design of Yb:YLF laser oscillators and amplifiers operated at cryogenic temperatures. Based on our spectroscopic data, we show the prerequisite crystal purity to achieve laser cooling below liquid nitrogen temperatures.
我们重新审视了掺镱氟化锂钇(Yb:YLF)用于激光冷却应用的光谱特性。时间分辨荧光光谱揭示了辐射寿命的温度依赖性,我们用激发离子在较高斯塔克能级上的玻尔兹曼分布来解释这一现象。利用荧光光谱中与温度相关的辐射寿命,对Yb:YLF在17 K至440 K范围内的发射截面进行了修正。我们给出了重要跃迁峰值随温度变化的拟合方程,这对于设计在低温下工作的Yb:YLF激光振荡器和放大器也很有用。基于我们的光谱数据,我们展示了在液氮温度以下实现激光冷却所需的晶体纯度。