ND:CE:YAG BY DeLn OPTICS
Description
Nd:Ce:YAG is an excellent laser material widely used for no-water cooling and miniature laser systems. In double doped Nd:Ce:YAG crystals Cerium are chosen as sensitizer for Nd3+ ions because of its strong absorption in UV spectral region at flash lamp pumping and efficient energy transfer to the Nd3+ excited state.
As a result, thermal distortion in Nd: Ce:YAG is low and the output laser energy is greater than that in Nd:YAG at the same pumping. Therefore it is possible to realize high power lasers with good beam quality.
Lasing wavelength at 1064 nm, laser damage threshold and thermal conductivity of the Nd: Ce:YAG crystals are the same as for Nd:YAG. It is the most ideal laser material for the air cooling lasers .It is suitable for different modes of operation (pulsed, Q-switched, mode locked) and high-average power lasers.
ND:CE:YAG BY DeLn OPTICS
Specifications |
|
---|---|
Type Of Crystal: | Nd:Ce:YAG |
Crystal Diameter: | N/A mm |
Crystal Length: | N/A mm |
AR Coating: | One side |
Features
Low threshold
Good thermal stability
High optical quality and high efficiency
Good anti-violet radiation property
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
-
Ships from:
China
-
Sold by:
-
On FindLight:
External Vendor
Claim Changchun DeLn Optics Technology Co. Ltd. Page to edit and add data
Frequently Asked Questions
Nd:Ce:YAG has low thermal distortion and greater output laser energy than Nd:YAG at the same pumping, making it possible to realize high power lasers with good beam quality.
Nd:Ce:YAG has a low threshold, good thermal stability, high optical quality and efficiency, and good anti-violet radiation property.
Nd:Ce:YAG is a laser material that is widely used for no-water cooling and miniature laser systems.
Nd:Ce:YAG is suitable for different modes of operation such as pulsed, Q-switched, mode locked, and high-average power lasers.
Cerium is chosen as sensitizer for Nd3+ ions because of its strong absorption in UV spectral region at flash lamp pumping and efficient energy transfer to the Nd3+ excited state.