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Thermal effects of Er 3+ /Yb 3+ ‐doped NaYF 4 phosphor induced by 980/1510 nm laser diode irradiation
Author(s) -
Wang Hong,
Yin Xiumei,
Xing Mingming,
Fu Yao,
Tian Ying,
Feng Xin,
Jiang Tao,
Luo Xixian
Publication year - 2018
Publication title -
journal of the american ceramic society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.9
H-Index - 196
eISSN - 1551-2916
pISSN - 0002-7820
DOI - 10.1111/jace.15246
Subject(s) - irradiation , materials science , laser , phosphor , diode , laser diode , analytical chemistry (journal) , doping , ion , optoelectronics , chemistry , optics , physics , organic chemistry , chromatography , nuclear physics
The thermal effects of Er/Yb‐doped NaYF 4 phosphor induced by 980/1510 nm laser diode irradiation were intuitively and contrastively investigated using an infrared thermal imaging technology with real‐time online monitoring. The Yb 3+ /Er 3+ codoped materials have strong thermal effects and high‐temperature elevation under 980 nm irradiation. However, the severe thermal effects of materials with higher Er 3+ ion doping concentration are remarkably attributed to the cross relaxation between the Er 3+ ions under 980 nm irradiation. The energy transfer between Er 3+ and Yb 3+ ions in Er 3+ /Yb 3+ ‐codoped materials also contributes to the thermal effects under 1510 nm laser diode irradiation. Under the same testing conditions, the temperature elevation ∆ T of samples induced by 1510 nm laser diode irradiation is lower than that induced by 980 nm laser diode irradiation. The temperature rising rate and elevation ∆ T value of samples depend on the ion doping concentration and power density of the laser diode excitation. The internal temperature of the samples exhibits deep temperature gradient under 980/1510 nm laser diode irradiation. By comparing the two kinds of thermometry methods, the temperature value calculated by fluorescence intensity ratio is almost similar to that obtained through infrared thermal imaging technology under higher excitation power pumping.

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