Sol–gel-derived photonic structures handling erbium ions luminescence

被引:0
|
作者
A. Lukowiak
A. Chiappini
A. Chiasera
D. Ristic
I. Vasilchenko
C. Armellini
A. Carpentiero
S. Varas
G. Speranza
S. Taccheo
S. Pelli
I. K. Battisha
G. C. Righini
W. Strek
M. Ferrari
机构
[1] IFN – CNR CSMFO Lab.,Institute of Low Temperature and Structure Research
[2] PAS,Dipartimento di Fisica
[3] Institut Ruđer Bošković,College of Engineering
[4] Università di Trento,undefined
[5] FBK Center for Materials and Microsystems,undefined
[6] Swansea University,undefined
[7] IFAC - CNR,undefined
[8] MiPLab,undefined
[9] National Research Center,undefined
[10] Museo Storico della Fisica e Centro di Studi e Ricerche Enrico Fermi,undefined
来源
Optical and Quantum Electronics | 2015年 / 47卷
关键词
Waveguide; Photonic crystal; Nanocrystals; Spectroscopy; Structure;
D O I
暂无
中图分类号
学科分类号
摘要
The sol–gel technique is a very flexible, relatively simple, and low-cost method to fabricate many different innovative photonic structures characterized by specific functionalities. During synthesis, starting from the molecular level, compounds or composites with well controlled composition can be obtained as thin films, powders or monoliths. These materials can be used to prepare such structures as waveguides, photonic crystals, coatings, and bulk glasses including spheres, rings and other geometries exploited in optical resonators fabrication. This article presents some results obtained by the authors in the field of the sol–gel-derived photonic structures. To emphasise the scientific and technological interest in this kind of systems and the versatility of the sol–gel route, the glass-based nano and micrometer scale range systems are discussed. Particularly, the following systems are described: silica–hafnia glass and glass–ceramic planar waveguides, nanosized tetraphosphates, and silica colloidal crystals. The attention is focused on the spectroscopic properties of Er3+\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\hbox {Er}^{3+}$$\end{document}-activated materials that due to the light emission can be used in the integrated optics area covering application in sensing, biomedical diagnostic, energy conversion, telecommunication, lighting, and photon management.
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页码:117 / 124
页数:7
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