概述
Chromium-doped yttrium aluminum garnet crystal (Cr:YAG) is an excellent performance passive Q-switched crystal widely used in dymium-doped YLF, neodymium-doped yttrium vanadate and passively Q-doped Q-doped lasers with wavelengths of 0.8 to 1.2um. Due to its superior chemical stability, resistance to UV radiation and good thermal conductivity, as well as its high damage threshold, Cr:YAG has become a very popular passive Q-modulating material.
Q-modulated principle: In passive Q-modulated lasers, Cr:YAG is used as a saturated absorber. It first absorbs light from the pump source, and when the absorption reaches saturation, it quickly releases the light, resulting in a high-intensity, short-pulse laser output. This release of light produces high-intensity, short-duration pulses that are typical of passively Q-switched lasers.
General parameters
| Form Tolerance(mm) | ±0.1 | Effective aperture(mm) | >90% |
| Face | <λ/10@633nm | Eccentricity | <20〞 |
| Finish | 20/10 | Design wavelength(nm) | 1064 |
| Coating | Both end faces are coated with anti-reflection film, and the residual reflectivity on one side is residual R<0.5%@1064nm |
Peculiarity
- Crystal structure: Cr:YAG crystals have a cubic crystal structure and the chemical formula is Cr:Y3Al5O12.
- Optical characteristics: It has a wide absorption band in the near-infrared region, which can effectively absorb light in the wavelength range of 900 to 1200 nanometers, reaching an absorption peak at about 1060nm, and its absorption peak cross-sectional area is large.
- Thermal Properties: Cr:YAG has high thermal conductivity and good thermal stability, allowing for effective heat dissipation and stability during high-power operation.
- Mechanical Properties: The crystal has high mechanical strength and hardness, with a hardness of around 8.5 on the Mohs scale.
- Chemical stability: Cr:YAG crystals have good chemical stability and can resist UV radiation and chemical corrosion, making them suitable for various harsh environments.
Physical and optical properties
|
Crystal structure |
Cube |
|
Doping concentration |
0.5~3% Cr |
|
Melting point |
1970℃ |
|
Curie Point |
936℃ |
|
Density |
4.56g/cm3 |
|
Mohs hardness度 |
8.5 |
|
Recovery time |
8.5us |
|
Thermal conductivity |
12.13W/m/K |
|
Attrition coefficient |
0.003cm-1 |
|
Refractive index |
1.82 @1064nm |
|
Ground absorption cross-sectional area |
4.3x10-18/cm2 |
|
The cross-sectional area of the absorbed radiation by stimulation |
8.2x10-19/cm2 |
|
Fluorescence lifetime |
3.4us |
|
Damage threshold |
>500MW/cm2 |
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