YSGG Single Crystal has important application value in dentistry, environmental research, optical communication and remote sensing, military, etc. Stanford Optics has rich experience in manufacturing and supplying high-quality Optical Products.
One of the advantages of single crystal fiber is that a suitable matrix material can be selected for doping with a variety of rare-earth ions, so as to obtain the laser output of the target wavelength band. Compared with the larger loss of traditional glass fiber in the mid-infrared band, YSGG single crystal has a smaller loss in the outer band and has low phonon energy, high doping ion concentration, low transmission loss, and a large aspect ratio. The ratio and other characteristics make it a suitable matrix material for achieving mid-infrared laser output.
Material |
Y3Sc2Ga3O12 |
Density (g/cm3) |
5.21 |
Size |
5x5mm, 10x10mm, or customized |
Growth Method |
Czochralski |
Mohs Hardness |
7.0 |
Crystal Structure |
Cubic |
Refractive index |
1.92 |
Melting Temperature |
1875℃ |
Color and Appearance |
Colorless transparent crystal |
Crystal Orientation |
<111> |
Polish |
One side or two sides polished |
It has important application value in dentistry, environmental research, optical communication and remote sensing, military, etc.
Our YSGG Single Crystal is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
Material |
Y3Sc2Ga3O12 |
Density (g/cm3) |
5.21 |
Size |
5x5mm, 10x10mm, or customized |
Growth Method |
Czochralski |
Mohs Hardness |
7.0 |
Crystal Structure |
Cubic |
Refractive index |
1.92 |
Melting Temperature |
1875℃ |
Color and Appearance |
Colorless transparent crystal |
Crystal Orientation |
<111> |
Polish |
One side or two sides polished |
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