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Enhanced Optical Properties of Germanate and Tellurite Glasses Containing Metal or Semiconductor Nanoparticles

机译:含金属或半导体纳米粒子的锗酸盐和碲酸盐玻璃的增强的光学性能

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摘要

Germanium- and tellurium-based glasses have been largely studied due to their recognized potential for photonics. In this paper, we review our recent studies that include the investigation of the Stokes and anti-Stokes photoluminescence (PL) in different glass systems containing metallic and semiconductor nanoparticles (NPs). In the case of the samples with metallic NPs, the enhanced PL was attributed to the increased local field on the rare-earth ions located in the proximity of the NPs and/or the energy transfer from the metallic NPs to the rare-earth ions. For the glasses containing silicon NPs, the PL enhancement was mainly due to the energy transfer from the NPs to the Er3+ ions. The nonlinear (NL) optical properties of PbO-GeO2 films containing gold NPs were also investigated. The experiments in the pico- and subpicosecond regimes revealed enhanced values of the NL refractive indices and large NL absorption coefficients in comparison with the films without gold NPs. The reported experiments demonstrate that germanate and tellurite glasses, having appropriate rare-earth ions doping and NPs concentration, are strong candidates for PL-based devices, all-optical switches, and optical limiting.
机译:由于锗和碲基玻璃具有公认的光子学潜力,因此已进行了大量研究。在本文中,我们回顾了我们最近的研究,其中包括对包含金属和半导体纳米粒子(NP)的不同玻璃系统中的斯托克斯和反斯托克斯光致发光(PL)的研究。对于具有金属NP的样品,增强的PL归因于位于NP附近的稀土离子上的局部电场增加和/或从金属NP到稀土离子的能量转移。对于含硅纳米粒子的玻璃,PL增强主要是由于能量从纳米粒子传递到Er 3 + 离子。还研究了含金纳米粒子的PbO-GeO2薄膜的非线性(NL)光学特性。皮秒级和亚皮秒级的实验表明,与没有金纳米粒子的薄膜相比,NL折射率的值增加了,NL吸收系数也大了。报道的实验表明,锗酸盐和碲酸盐玻璃具有适当的稀土离子掺杂和NPs浓度,是基于PL的器件,全光开关和光学限制的强候选者。

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