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Refractive index changes in solid-state laser materials

机译:固态激光材料的折射率变化

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In this work the application of Thermal Lens (TL) and Z-scan techniques to the study of thermo-optical and spectroscopic properties of Solid-State Laser Materials (SSLM) is described. The theoretical basis for quantitative measurements is discussed together with the advantages and limitations of the methods. We discuss applications of the TL technique to the study of thermal diffusivity, the temperature coefficient of optical path length (ds/dT), heat efficiency (the fraction of absorbed energy converted into heat) and the fluorescence quantum efficiency (η). Several approaches to determine η and the study Energy Transfer mechanisms in SSL materials doped with Nd~(3+), Yb~(3+), Tm~(3+) and Er~(3+) are presented. The electronic contribution to the nonlinearity was investigated using the Z-scan technique in the time-resolved mode. The measurements were performed spectroscopically allowing the determination of the lineshapes of real and imaginary parts of the nonlinear refractive index (n_2) in resonance with laser transitions. The results are interpreted considering resonant and nonresonant contribution to n_2. We also compare the magnitude of electronic and thermal refractive index changes in SSL.
机译:在这项工作中,描述了将热透镜(TL)和Z扫描技术应用于固态激光材料(SSLM)的热光学和光谱性质的研究。讨论了定量测量的理论基础以及方法的优点和局限性。我们讨论了TL技术在热扩散率,光程长度的温度系数(ds / dT),热效率(吸收的能量转换成热量的比例)和荧光量子效率(η)方面的应用。提出了几种确定η的方法,并研究了掺Nd〜(3 +),Yb〜(3 +),Tm〜(3+)和Er〜(3+)的SSL材料的能量转移机理。在时间分辨模式下,使用Z扫描技术研究了对非线性的电子贡献。用光谱法进行测量,可以确定与激光跃迁共振的非线性折射率(n_2)的实部和虚部的线形。考虑对n_2的共振和非共振贡献来解释结果。我们还比较了SSL中电子和热折射率变化的幅度。

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