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Energy-Transfer Processes Among Non-Homogeneously Distributed Rare-Earth Ions and Impact on Amplification and Lasing

机译:非均匀分布稀土离子之间的能量转移过程及其对放大和发射的影响

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Energy-transfer processes such as energy-transfer upconversion are often detrimental to the performance of rare-earth-doped amplifiers and lasers on the typical luminescence transitions in the near-infrared spectral region between 1-2 μm. In order to quantify the influence of these interionic processes on amplification and lasing, not only luminescence decay curves have to be measured, but also the population dynamics of the electronic level scheme need to be modeled. The usually encountered non-homogeneous ion distributions complicate the situation. Here we present a stochastic model of energy-transfer processes that takes a statistical ion distribution into account. The influence of energy-transfer upconversion and cross-relaxation on amplification and lasing on the 1.06 μm transition in Nd3+, the 1.53 μm transition in Er3+, or the 1.84 μm transition in Tm3+under these conditions is investigated.
机译:诸如能量转移上转换之类的能量转移过程通常不利于稀土掺杂的放大器和激光器在1-2μm之间的近红外光谱区域中的典型发光跃迁上的性能。为了量化这些离子过程对放大和激射的影响,不仅必须测量发光衰减曲线,而且还需要对电子能级方案的总体动力学建模。通常遇到的非均匀离子分布使情况复杂化。在这里,我们提出了一种能量转移过程的随机模型,该模型考虑了统计离子分布。能量转移上转换和交叉弛豫对Nd中1.06μm跃迁的放大和激射的影响 3 + ,Er的1.53μm跃迁 3 + ,或Tm中1.84μm的跃迁 3 + 在这些条件下进行了调查。

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