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Thermo-optical properties of Bi nanoparticles embedded in germanate glasses and alumina thin films

机译:嵌入锗酸盐玻璃和氧化铝薄膜中的Bi纳米粒子的热光学性质

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摘要

Materials, and particularly glasses, with a tailor-made spectral optical response that can be switched in a controlled way using external stimuli excitation are of interest for the development of active optical devices, such as active filters or all-optical switching components. Based on the dielectric functions of solid and liquid bismuth (Bi), it is expected that both solid and liquid Bi nanostructures will show optical resonances with relevant different features in the near ultraviolet to near infrared. In addition, Bi has a low melting point that enables the solid liquid phase change under moderate heating. Profiting of these singular properties we present and review in this paper the main results that have been obtained in our laboratory concerning the thermo-optical response of bulk germanate glasses and amorphous Al2O3 thin films with embedded Bi nanoparticles (NPs). In both materials the optical transmission as a function of the temperature shows broad hysteresis loops. The optical contrast and width of these cycles depend on the Bi content and NP size. From the successful modelling of the optical properties of the Bi NPs-doped glasses, it is proposed that the observed material thermo-optical response arises from the change in the dielectric function of the Bi NPs upon melting, which induces relevant changes in the resonant optical behaviour of the Bi NPs. These results suggest that glasses with embedded Bi NPs are promising for the design of spectral-selective thermo-optical devices. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:具有定制的光谱光学响应的​​材料,特别是玻璃,可以使用外部刺激激发以受控方式进行切换,对于开发有源光学设备(例如有源滤光镜或全光学开关组件)是很重要的。基于固态和液态铋(Bi)的介电功能,预计固态和液态Bi纳米结构都会在近紫外到近红外中显示出具有相关不同特征的光学共振。另外,Bi的熔点低,能够在适度的加热下使固液相变。利用这些奇异特性,我们将在本文中介绍并回顾在实验室中获得的有关块状德国锗玻璃和嵌入Bi纳米粒子(NPs)的无定形Al2O3薄膜的热光响应的主要结果。在这两种材料中,随温度变化的光传输显示出宽的磁滞回线。这些循环的光学对比度和宽度取决于Bi含量和NP大小。通过对Bi NPs掺杂玻璃光学特性的成功建模,建议观察到的材料热光响应是由于熔化时Bi NPs介电函数的变化引起的,从而引起共振光学的相关变化。 Bi NPs的行为。这些结果表明,具有嵌入式Bi NP的玻璃有望用于光谱选择性热光器件的设计。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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