LiNbO3 SAW Devices LN Crystal Chemical Stable For Telecommunication
LiNbO3 Lithium Niobate crystal For Optical Communication
Introduction:
Lithium niobate crystal has a long history and the most complete physical effects. It is used to prepare acoustic filters, resonators, electro-optical modulators, and electro-optical Q-switches. Devices such as phase modulators and phase modulators have been widely used in electronic technology, optical communication technology, laser technology, and other fields.
Lithium niobate crystal has two important characteristics. One is that lithium niobate crystal has many photoelectric effects, including piezoelectric effect, electro-optic effect, nonlinear optical effect, photorefractive effect, photovoltaic effect, photoelastic effect, acousto-optic effect The second is that the performance of lithium niobate crystal is highly adjustable, which is caused by the lattice structure and abundant defect structure of lithium niobate crystal.
Advantages:
- Wide transparency range,
- High electro-optic and nonlinear optic coefficients,
- Very high electromechanical coupling coefficients
- Chemical and mechanical stability.
Specifications:
| Growth method | Czochralski |
| Crystal structure | Trigonal system |
| Transparency Range | 420-5200nm |
| Lattice constant | a=b=5.148Å c=13.863 Å |
| Melting point | 1250℃ |
| Curie temperature | 1142 ℃ |
| Density | 4.64 g/cm3 |
| Hardness | 5 Mohs |
| Refractive index | No=2.286 ne=2.203 (632.8nm) |
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