Grupo de Fotônica e Fluidos Complexos, Instituto de Física, Universidade Federal de Alagoas, 57072-970 Maceió-Al, Brazil.
J Chem Phys. 2011 Mar 28;134(12):124503. doi: 10.1063/1.3567091.
In this work we present a comprehensive study of the spectroscopic and thermo-optical properties of a set of samples with composition xNd(2)O(3)-(5-x)Y(2)O(3-)40CaO-55B(2)O(3) (0 ≤ x ≤ 1.0 mol%). Their fluorescence quantum efficiency (η) values were determined using the thermal lens technique and the dependence on the ionic concentration was analyzed in terms of energy transfer processes, based on the Förster-Dexter model of multipolar ion-ion interactions. A maximum η = 0.54 was found to be substantially higher than for yttrium aluminoborate crystals and glasses with comparable Nd(3+) content. As for the thermo-optical properties of yttrium calcium borate, they are comparable to other well-known laser glasses. The obtained energy transfer microparameters and the weak dependence of η on the Nd(3+) concentration with a high optimum Nd(3+) concentration put this system as a strong candidate for photonics applications.
在这项工作中,我们对一组组成分别为 xNd(2)O(3)-(5-x)Y(2)O(3-)40CaO-55B(2)O(3)(0 ≤ x ≤ 1.0 mol%)的样品进行了全面的光谱和热光性质研究。我们使用热透镜技术确定了它们的荧光量子效率(η)值,并根据多极离子-离子相互作用的福斯特-德克斯特模型,分析了离子浓度对η的依赖关系,以研究能量传递过程。我们发现 η 的最大值为 0.54,明显高于具有可比 Nd(3+)含量的钇铝硼酸盐晶体和玻璃。至于钇钙硼酸盐的热光性质,它们与其他知名的激光玻璃相当。所得到的能量传递微观参数和 η 对 Nd(3+)浓度的弱依赖性,以及高最佳 Nd(3+)浓度,使得该系统成为光子学应用的有力候选者。