KBBF Crystal, referred to as Potassium Yttrium Double Tungstate, is a new type of deep ultraviolet nonlinear optical crystal capable of producing high-quality, high-power lasers ranging from infrared to vacuum ultraviolet. Stanford Optics has rich experience in manufacturing and supplying high-quality Optical Products.
KBBF Crystal, referred to as Potassium Yttrium Double Tungstate, is a new type of deep ultraviolet nonlinear optical crystal capable of producing high-quality, high-power lasers ranging from infrared to vacuum ultraviolet. It has a high nonlinear optical coefficient and can generate coherent light in the deep ultraviolet region by a direct second harmonic generation with a minimum wavelength of 177 nm. Alternatively, a special prism-coupling technique can be used to generate coherent laser light bel.
Crystal Structure |
Tetragonal System |
Lattice Parameters |
a=b=c=6.207Å |
Melting Point |
834℃ |
Mohs Hardness |
4 |
Density |
3.01g/cm³ |
Thermal Conductivity |
1.38W/(m·K) |
Thermal Expansion Coefficient |
a:7.5×10-6/K, b:7.5×10-6/K, c:5.5×10-6/K |
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It is used to generate coherent laser light bel.
Our KBBF Crystal is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
Crystal Structure |
Tetragonal System |
Lattice Parameters |
a=b=c=6.207Å |
Melting Point |
834℃ |
Mohs Hardness |
4 |
Density |
3.01g/cm³ |
Thermal Conductivity |
1.38W/(m·K) |
Thermal Expansion Coefficient |
a:7.5×10-6/K, b:7.5×10-6/K, c:5.5×10-6/K |
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