Slab Laser Crystal Packages
First soldered high power slab crystal package available on the market
key features
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Homogenous heat dissipation over entire crystal surface area
-
linear amplification of USP lasers
-
Easy adaptable to different crystal dimensions and dopant concentrations
-
Integrated water cooling with optimized in-flow trough micro channels
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Industry proven concept
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Long-term performance stability
- Flux-free soldered crystal package
- Industry proven concept
- Excellent performance for demanding industry and laboratory application
- Homogenous heat dissipation over entire crystal surface area
- Stress-reduced crystal mounting due to CTE-matched heatsink material pairing
- Easy adaptable to different crystal dimensions and dopant concentration
- Integrated water-cooling with optimized in-flow through micro channels
- Optical coating by world-leading coating manufacturer
- Long-term performance stability
- Assembly of user provided optics possible
We offer many configurations of packaged laser crystals. Please contact us for any request.
Configurations:
|
Laser Crystal Package |
Crystal Geometry |
Crystal Material |
Dopant concentration, [%] |
Length X (optical axis), [mm] |
Thickness, [mm] |
Width Y, [mm] |
|
LCP- |
S- |
Yb- |
3.0- |
10- |
1- |
10 |
|
LCP- |
S- |
Nd- |
0.7- |
10- |
1- |
10 |
|
Customer inspired configurations available! | ||||||
Example Crystal material: Yb:YAG, Nd:YAG, Yb:KYW, Yb:LuAg, Nd:YVO4, Ti:Sa, Yb:YLF, more on request
Laser parameters of amplified beam are depending on seed-beam and pump channel. If any further assistance concerning your individual setup is needed, feel free to contact us.
Depending on the setup and applied power, thermal bonding of solid-state laser crystals plays a key role in achieving stable and high-performance amplification power. Due to our design concept and solder joining technology, a homogeneous heat dissipation is achieved over the large slab bonding surface area. After year of dedicated research and development for high-end laser beam sources supported by thermal simulations, we have innovated a distinctive approach for mounting and cooling solid-state laser crystals.
Cooling water flow inside LCP-S

Exemplary temperature distribution of a line-pumped slab crystal

Heatsink dimension can be easily adapted to other geometries.
