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Rare earth doped nanoparticles in organic and inorganic host materials for application in integrated optics

机译:稀土掺杂纳米粒子在有机和无机主体材料中的应用于集成光学

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摘要

The preparation and the optical properties of lanthanum fluoride (LaF3) nanoparticles doped with erbium and neodymium will be discussed. Organic and inorganic materials in the form of polymers and sol-gels were used to serve as the hosts for the inorganic nanoparticles, respectively. The organic host material has been synthesized such that it is photo-crosslinkable to facilitate straightforward multimode and monomode waveguide fabrication. Our focus will be on the optical properties of both the inorganic rare-earth doped nanoparticles and the host materials. The importance of the refractive indices of the particles and the host material and particle size on the optical scattering properties will be addressed. The optical transmission windows of the host materials do overlap with the absorption peaks of the erbium and neodymium in order to have efficient optical pumping, as well as with the spontaneous emission spectra of the rare earth metals for use as optical amplifiers around 1330nm and 1550nm. Furthermore, the improvement on the excited state lifetimes of the rare earths in the nanoparticles compared to the lifetimes of rare earths directly immersed in sol-gels will be presented.
机译:将讨论掺with和钕的氟化镧(LaF3)纳米粒子的制备和光学性能。聚合物和溶胶-凝胶形式的有机和无机材料分别用作无机纳米粒子的主体。已经合成了有机主体材料,使得其可光交联以促进简单的多模和单模波导制造。我们的重点将放在无机稀土掺杂的纳米粒子和主体材料的光学特性上。将解决颗粒和主体材料的折射率以及颗粒尺寸对光散射特性的重要性。主体材料的光传输窗口确实与and和钕的吸收峰重叠,以便进行有效的光泵浦,并与用作光放大器的稀土金属的自发发射光谱在1330nm和1550nm附近。此外,将提出与直接浸入溶胶-凝胶中的稀土元素的寿命相比,纳米粒子中稀土元素的激发态寿命的改进。

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