Articolo in rivista, 2022, ENG, 10.1016/j.optmat.2022.111971

Structure- and excitation-dependent photoluminescence of As-S:Yb3+ films

Dmitry Usanov a,b,*, Aleksey Nezhdanov a,**, Andrey Zhukov a, Aleksey Markelov a, Vladimir Trushin a, Maurizio Ferrari c, Aleksandr Mashin a

a Lobachevsky State University of Nizhniy Novgorod, 23 Gagarin avenue, 603950, Nizhniy Novgorod, Russia b Spectroscopy of Novel Materials Group, Paul Scherrer Institut, Forschungsstrasse 111, 5232, Villigen-PSI, Switzerland c IFN-CNR CSMFO Lab. and FBK Photonics Unit, Via alla Cascata 56/C Povo, 38100, Trento, Italy

In the article, we present and discuss the features of the structure and photoluminescence properties of Yb-doped As-S films synthesized by PECVD employing solid-state initial precursors. The doping was carried out during the deposition process. By controlling the temperature of the precursor sources and the composition of the lowtemperature nonequilibrium plasma, we synthesized amorphous As-S:Yb films with Yb content ranging from 0.6 to 8.4 at. %. The change in the ratio of structural elements and surface morphology as a function of the elemental composition is shown. The increase of the Yb content leads to a redshift of the short-wavelength absorption edge. The dependence of the shape and intensity of 2F5/2 -> 2F7/2 photoluminescence, observed in the range 930-1030 nm on the excitation wavelength (632.8 nm and 785 nm) and Yb concentration was evaluated. The relation between composition and atomic structure of the amorphous matrix of arsenic sulfide on the photoluminescent properties of Yb3+ ions is discussed.

Optical materials (Amst., Print) 124 , pp. 111971-1–111971-7

Keywords

Amorphous films, Chalcogenides, Photoluminescence, Rare earth doping, Arsenic sulfide, PECVD

CNR authors

Ferrari Maurizio

CNR institutes

IFN – Istituto di fotonica e nanotecnologie

ID: 462359

Year: 2022

Type: Articolo in rivista

Creation: 2022-01-13 15:09:07.000

Last update: 2022-01-13 15:09:07.000

CNR authors

External links

OAI-PMH: Dublin Core

OAI-PMH: Mods

OAI-PMH: RDF

DOI: 10.1016/j.optmat.2022.111971

External IDs

CNR OAI-PMH: oai:it.cnr:prodotti:462359

DOI: 10.1016/j.optmat.2022.111971