“…The incorporation of Y 3+ into the GSAG matrix resulted in the disruption of the GSAG lattice integrity, thereby enhancing phonon scattering and shortening the MFP, consequently leading to a decline in thermal conductivity. Despite the decrease in κ for the GSAG crystal due to Y 3+ incorporation, the κ value for the GYSAG crystal remains higher than those for numerous oxide laser crystals, such as borate, 34 aluminate, 35 and vanadate, 36 among others. This moderate thermal behavior exhibited by the mixed garnet crystals highlights their promising prospects for applications in high-power pumped lasers.…”
Two distinct compositions of mixed garnet crystals, codoped with Dy3+ and Tb3+ ions, were grown using the Czochralski method. The structures and thermal properties of these crystals were thoroughly examined,...
“…The incorporation of Y 3+ into the GSAG matrix resulted in the disruption of the GSAG lattice integrity, thereby enhancing phonon scattering and shortening the MFP, consequently leading to a decline in thermal conductivity. Despite the decrease in κ for the GSAG crystal due to Y 3+ incorporation, the κ value for the GYSAG crystal remains higher than those for numerous oxide laser crystals, such as borate, 34 aluminate, 35 and vanadate, 36 among others. This moderate thermal behavior exhibited by the mixed garnet crystals highlights their promising prospects for applications in high-power pumped lasers.…”
Two distinct compositions of mixed garnet crystals, codoped with Dy3+ and Tb3+ ions, were grown using the Czochralski method. The structures and thermal properties of these crystals were thoroughly examined,...
Dy:YCa4O(BO3)3 (Dy:YCOB) and Dy,Tb:YCa4O(BO3)3 (Dy,Tb:YCOB) single crystals with different doping ratios were grown through Bridgman technique and spectroscopic properties of the crystals were investigated. The crystals were designed as laser...
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