High-concentration Er 3+ ion singly doped GaTaO 4 single crystal for promising all-solid-state green laser and solid-state lighting applications
Exploring new visible laser crystals is of great significance to the development of diode pumped all-solid-state visible lasers and solid-state lighting. In this work, a high concentration (10 at%) Er 3+ ion singly doped GdTaO 4 single crystal with high quality as a promising visible laser crystal w...
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Published in | CrystEngComm Vol. 24; no. 4; pp. 818 - 827 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
25.01.2022
|
Online Access | Get full text |
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Summary: | Exploring new visible laser crystals is of great significance to the development of diode pumped all-solid-state visible lasers and solid-state lighting. In this work, a high concentration (10 at%) Er
3+
ion singly doped GdTaO
4
single crystal with high quality as a promising visible laser crystal was grown successfully by the Czochralski method. The structure of the crystal was determined to be a monoclinic structure with the space group
C
2/
c
by powder and single-crystal X-ray diffraction characterization techniques. The absorption and blue and violet light excited emission spectra of the crystal were obtained and analyzed. A strong emission band centered at 555 nm was observed under excitation at both 450 nm and 377 nm. The absorption cross-section at 450 nm and emission cross-section at 555 nm were calculated to be 4.60 × 10
−21
and 4.57 × 10
−21
cm
2
, respectively, which are comparable to those of other promising InGaN diode pumped visible laser crystals doped with rare earth ions (Er
3+
, Dy
3+
and Pr
3+
). Under 450 nm or 355 nm laser excitation, the crystal emits strong green fluorescence. A 380 nm LED chip pumped prototype device was fabricated using the crystal, which exhibited green light under the driving current. Besides, the green and red upconversion luminescence of Er
3+
in the GdTaO
4
single crystal was found to be a two-photon process under the excitation of a 980 nm laser. All these results strongly recommend that the 10 at% Er
3+
ion doped GdTaO
4
crystal is very promising for diode pumped green lasers and probably useful for solid-state lighting. |
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ISSN: | 1466-8033 1466-8033 |
DOI: | 10.1039/D1CE01333E |