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Optical Temperature Sensor Based on Green Fluorescence of Er2O3 · 3Nb2O5 Phosphor

  • Tianjin University
  • City University of Hong Kong

Research output: Contribution to journalArticlepeer-review

Abstract

We report an optical temperature sensor based on the thermal effect of fluorescence intensity ratio of 980-nm upconverted green 530- and 550-nm emissions of Er2O3 · 3Nb2O5 phosphor. The sensor consists of only a 980-nm LD, two narrow-band interference filters and two Si-photocells, while being without the use of optical lens to collect the fluorescence. Thermal effect on the photocell output was calibrated. The results show that the output has a linear relation to the temperature and the linearity is independent of input power. The performance characterization shows that the sensor exhibits a relative sensitivity (5-7) × 10-3 K-1 in the temperature range of 303-353 K. The setup is applicable to other Er3+-doped materials with a higher relative sensitivity.

Original languageEnglish
Article number7370799
Pages (from-to)806-809
Number of pages4
JournalIEEE Photonics Technology Letters
Volume28
Issue number7
DOIs
StatePublished - 1 Apr 2016
Externally publishedYes

Keywords

  • ErO · 3NbO phosphor
  • fluorescence intensity ratio (FIR)
  • Optical temperature sensor
  • upconversion

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