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Temperature sensor based on the Er green upconverted emission in a fluorotellurite glass
Authors:Sergio F. Leó  n-LuisAuthor VitaeUlises R. Rodrí  guez-MendozaAuthor Vitae,Emmanuel LallaAuthor VitaeVí  ctor Laví  nAuthor Vitae
Affiliation:a MALTA Consolider Team and Departamento de Física Fundamental y Experimental, Electrónica y Sistemas, Universidad de La Laguna, E-38200 San Cristóbal de La Laguna, Santa Cruz de Tenerife, Spain
b Unidad Asociada UVA-CSIC, Edificio INDITI, Parque Tecnológico de Boecillo, E-47152 Boecillo, Valladolid, Spain
Abstract:The temperature dependence of the green upconverted emission from the two thermally coupled 2H11/2 and 4S3/2 levels of the Er3+ ion in a fluorotellurite glass has been analyzed as a function of the optically active ion concentration in order to check its availability as a temperature sensor. The infrared-to-green upconverted emission have been observed by the naked eyes after a cw laser diode excitation at 800 nm. The fluorescence intensity ratio between the thermally coupled emitting levels as well as the temperature sensitivity has been experimentally obtained up to 540 K. A better behaviour as a temperature sensor has been obtained for the less Er3+ concentrated glass with a maximum sensitivity of 54 × 10−4 K−1 at 540 K, one of the highest found in rare-earth doped transparent materials.
Keywords:42.62.Fi Laser spectroscopy   78.20.N-Thermo-optic effects   78.55.&minus  m Photoluminescence   Properties and materials
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