YB:YAG BY DeLn OPTICS
Description
Yb:YAG is one of the most promising laser-active materials and more suitable for diode-pumping than the traditional Nd-doped crystals. It can be pumped at 0.94 nm and generates 1.03 nm laser output.
Compared with the commonly used Nd:YAG crystal, Yb:YAG crystal has a larger absorption bandwidth in order to reduce thermal management requirements for diode lasers, a longer upper-state lifetime, three to four times lower thermal loading per unit pump power.
Yb:YAG crystal is expected to replace Nd: YAG crystal for high power diode-pumped lasers and other potential applications, such as, its doubling wavelength is 515 nm very close to that of Ar-ion laser (514 nm),which makes it possible to replace large volume Ar-ion laser.
YB:YAG BY DeLn OPTICS
Specifications |
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Type Of Crystal: | Yb:YAG |
Crystal Diameter: | N/A mm |
Crystal Length: | N/A mm |
AR Coating: | One side, Both sides |
Features
Very low fractional heating, less than 11%
Very high slope efficiencyBroad absorption bands, about 8nm@940nm
No excited-state absorption or up-conversion
Conveniently pumped by reliable InGaAs diodes at 940nm(or 970nm)
High thermal conductivity and large mechanical strength
High optical quality
For pricing, technical or any other questions please contact the supplier
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- Direct contact with supplier
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Ships from:
China
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Sold by:
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On FindLight:
External Vendor
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Frequently Asked Questions
Yb:YAG crystal has a larger absorption bandwidth compared to Nd:YAG crystal in order to reduce thermal management requirements for diode lasers.
The doubling wavelength of Yb:YAG crystal is 515 nm, which is very close to that of Ar-ion laser (514 nm), making it possible to replace large volume Ar-ion laser.
Yb:YAG crystal has a very low fractional heating of less than 11%.
Yb:YAG crystal can be conveniently pumped by reliable InGaAs diodes at 940nm (or 970nm).
Yb:YAG crystal is a laser-active material that is suitable for diode-pumping and is expected to replace Nd:YAG crystal for high power diode-pumped lasers and other potential applications.