Repository logo

Infrared-to-visible frequency upconversion in transparent glass ceramics containing trivalent-rare-earth-doped nanocrystals

Loading...
Thumbnail Image

Advisor

Coadvisor

Graduate program

Undergraduate course

Journal Title

Journal ISSN

Volume Title

Publisher

Type

Work presented at event

Access right

Acesso abertoAcesso Aberto

Abstract

In this work we report on visible upconversion emission in Er 3+-, and Ho3+-doped PbGeO3-PbF 2-CdF2-based transparent glass ceramics under 980 nm infrared excitation. In erbium-doped vitroceramic samples, blue(410 ran), green(530, and 550 nm) and red(660 nm) emission signals were generated, which were identified as due to the 2H9/2, 2H 11/2, 4S3/2, and 4F9/2 transitions to the 4I15/2 ground-state, respectively. Intense red(650 nm) upconversion emission corresponding to the 5F5 - 5I8 transition and very small blue(490 nm) and green(540 nm) signals assigned to the 5F 2,3 - 5I8 and 4S2, 5F4 - 5I8 transitions, respectively, were observed in the holmium-doped samples. The 540 nm is the dominant upconversion signal in Ho3+-doped vitroceramics under 850 nm excitation. The dependence of the upconversion processes upon pump power and doping concentration are also investigated, and the main routes for the upconversion excitation processes are also identified. The comparison of the upconversion process in transparent glass ceramics and the precursor glass was also examined and the results revealed that the former present higher upconversion efficiencies.

Description

Keywords

Glass, Glass-ceramics, Luminescence, Rare-earth, Upconversion, Vitroceramics, Doping (additives), Frequencies, Ground state, Lasers, Nanostructured materials, Rare earth compounds, Solid state device structures, Glass ceramics

Language

English

Citation

Proceedings of SPIE - The International Society for Optical Engineering, v. 5350, p. 132-139.

Related itens

Sponsors

Units

Item type:Unit,
Instituto de Química
IQAR
Campus: Araraquara


Departments

Undergraduate courses

Graduate programs

Other forms of access