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Optical thermometry with single crystal

11.08.23 | Higher Education Press

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Optical thermometry based on upconversion (UC) luminescence of lanthanide is of high sensitivity and rapid response. The basic principle behind UC luminescence is a process which converts low-energy photons (near infrared, NIR) into high-energy photons (visible) through the anti-Stokes mechanism. Firstly, the Yb 3+ ions absorb low energy photon with wavelength about 980 nm, then Yb 3+ ions could effectively transfer energy to Ho 3+ ions due to the energy levels matching between Yb 3+ ions and Ho 3+ ions, while the Ho 3+ ion accepts the energy from two different Yb 3+ ions, it is able to emit one photon with wavelength of 550 or 650 nm, and the intensity ratio of these two emission bands is called luminescence intensity ratio (LIR). The optical thermometry is realized by the alternation of LIR with temperature changing. This way, the temperature can be deduced by certain LIR.

Researchers led by Prof. Shoujun Ding at Anhui University of Technology (AHUT), China, are interested in optical thermometry with single crystal, the traditional LIR technique relies on detecting the thermally coupled two energy levels such as Er 3+ ( 2 H 11/2 , 3 S 3/2 ) and Tm 3+ ( 3 F 2,3 , 3 H 4 ) which are limited by the energy gaps between these pairs of levels, but in Ho 3+ ions, the non-thermally coupled energy levels ( 5 F 4 / 5 S 2 and 5 F 5 ) with energy gap of 3000 cm - 1 allow higher sensitivity. The non-contact thermometry technique based on LIR enables the realization of temperature measurement in certain harsh conditions such as intracellular, coalmines and power stations. The single crystal Gd 0.74 Y 0.2 TaO 4 is selected to hold Yb 3+ ions and Ho 3+ ions instead of traditional phosphors, this crystal owns low symmetry and strong crystal field, which is conducive to enhancing the photoluminescence efficiency of Re ions. The maximum S a and S r value of this new single crystal achieved 0.0010 and 0.0037 K - 1 , respectively. The researchers predict the significant potential of Yb,Ho:GYTO single crystal for applications in optical thermometry. The work entitled “ Upconversion luminescence and optical thermometry behaviors of Yb 3+ and Ho 3+ co-doped GYTO crystal ” was published on Frontiers of Optoelectronics (published on Oct. 31, 2023).

Frontiers of Optoelectronics

10.1007/s12200-023-00083-2

Experimental study

Not applicable

Upconversion luminescence and optical thermometry behaviors of Yb3+ and Ho3+ co-doped GYTO crystal

31-Oct-2023

Keywords

Article Information

Contact Information

Rong Xie
Higher Education Press
xierong@hep.com.cn

Source

How to Cite This Article

APA:
Higher Education Press. (2023, November 8). Optical thermometry with single crystal. Brightsurf News. https://www.brightsurf.com/news/LQ47GVN8/optical-thermometry-with-single-crystal.html
MLA:
"Optical thermometry with single crystal." Brightsurf News, Nov. 8 2023, https://www.brightsurf.com/news/LQ47GVN8/optical-thermometry-with-single-crystal.html.