Effect of Ga3+/Sc3+ on Yb3+ emission in mixed YAG at cryogenic temperatures PAPER | Optical Materials: X

Advanced Laser Development experts from the HiLASE Centre contributed to a recent publication in the Optical Materials: X journal. The paper is titled Effect of Ga3+/Sc3+ on Yb3+ emission in mixed YAG at cryogenic temperatures.

Congratulations to HiLASIANS Venkatesan Jambunathan, Great Chayran, Martin Smrž and Tomáš Mocek! They collaborated with a team of researchers from the Italian Institute of Science, Technology and Sustainability for Ceramics, and the Institute for Single Crystals of NAS of Ukraine: Jan Hostaša, Dariia Chernomorets, Andreana Piancastelli, Chiara Zanelli, Francesco Picelli, Valentina Biasini, and Laura Esposito.

We studied the effect of Ga3+and Sc3+ on Yb:YAG emission at cryogenic temperatures on three different mixed garnets namely Yb:YGAG, Yb:YSAG and Yb:YSGAG. The compositional tuning of these mixed garnets was achieved by preparing ceramic pellets by solid state reaction with different concentration of Ga3+, or Sc3+, or both. The incorporation of Sc3+ in Yb:YAG leads only to a limited spectral broadening. On the other hand, the incorporation of either Ga3+ or both Ga3+ and Sc3+ results in a significant spectral broadening. In the latter case, this inhomogeneous broadening is attributed to the mixed occupancy of both Ga3+ and Sc3+ in octahedral and tetragonal sites in the crystal lattice leading to a significant distortion in the structure.

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