Neodymium and ytterbium co-doped quartz laser glass and preparation method thereof
A laser glass and co-doping technology, applied in the field of neodymium-ytterbium co-doped quartz laser glass and its preparation, to achieve the effects of low thermal expansion coefficient and excellent high repetition frequency thermal shock resistance
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Embodiment 1
[0028] The preparation method of embodiment 1 is as follows:
[0029] 1) Preparatory work: purchase undensified porous silica powder prepared by an external vapor deposition process from an optical fiber preform production enterprise. Prepare the solution: add a certain amount of aluminum chloride, ytterbium chloride, neodymium chloride, and phosphoric acid to dissolve in ethanol. In the solution, the concentration of ytterbium chloride is 0.02mol / L, and the concentration of neodymium chloride is 0.08mol / L. The molar ratio of the sum of ytterbium chloride and aluminum chloride to aluminum chloride is 1:10, and the concentration of phosphoric acid is 1mol / L, forming a mixed ethanol solution of aluminum chloride, ytterbium chloride, neodymium chloride and phosphoric acid;
[0030] 2) Doping by soaking method: soak the purchased silica porous powder in the mixed ethanol solution of aluminum chloride, ytterbium chloride, neodymium chloride and phosphoric acid for more than 30 minu...
Embodiment 2
[0034] The preparation method of embodiment 2 is as follows:
[0035] 1) Preparatory work: purchase undensified porous silica powder prepared by an external vapor deposition process from an optical fiber preform production enterprise. Prepare the solution: add a certain amount of aluminum chloride, ytterbium chloride, neodymium chloride, and phosphoric acid to dissolve in ethanol. In the solution, the concentration of ytterbium chloride is 0.01mol / L, and the concentration of neodymium chloride is 0.04mol / L. The molar ratio of the sum of ytterbium chloride and aluminum chloride to aluminum chloride is 1:10, and the concentration of phosphoric acid is 0.5mol / L, forming a mixed ethanol solution of aluminum chloride, ytterbium chloride, neodymium chloride and phosphoric acid;
[0036] 2) Doping by soaking method: soak the purchased silica porous powder in the mixed ethanol solution of aluminum chloride, ytterbium chloride, neodymium chloride and phosphoric acid for more than 30 mi...
Embodiment 3
[0040] The preparation method of embodiment 3 is as follows:
[0041]1) Preparatory work: purchase undensified porous silica powder prepared by an external vapor deposition process (OVD) from an optical fiber preform manufacturer. Prepare the solution: add a certain amount of aluminum chloride, ytterbium chloride, neodymium chloride, and phosphoric acid to dissolve in ethanol. In the solution, the concentration of ytterbium chloride is 0.01mol / L, and the concentration of neodymium chloride is 0.07mol / L. The molar ratio of the sum of ytterbium chloride and aluminum chloride to aluminum chloride is 1:10, and the concentration of phosphoric acid is 0.8mol / L, forming a mixed ethanol solution of aluminum chloride, ytterbium chloride, neodymium chloride and phosphoric acid;
[0042] 2) Doping by soaking method: soak the purchased silica porous powder in the mixed ethanol solution of aluminum chloride, ytterbium chloride, neodymium chloride and phosphoric acid for more than 30 minute...
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Abstract
Description
Claims
Application Information
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