玄瓷 XUANCI
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Laser Ceramic

High-power gain media · Domestic substitution

XUANCI's transparent laser ceramics — including Y₂O₃ / Lu₂O₃ / Sc₂O₃ / YAG / Spinel / ALON systems — are produced via in-house nano-powder synthesis, vacuum sintering and HIP densification. Optical uniformity approaches single-crystal YAG, sustaining kilowatt-class laser power.

Laser Ceramic

Polycrystalline laser ceramics offer process advantages over single-crystal YAG: larger sizes, lower cost, freely controlled doping concentration and gradient structures — the mainstream direction for next-generation high-power and high-energy laser media.

3D additive routes have been validated for complex-shaped polycrystalline oxide laser gain media.

Samples

Y₂O₃
Y₂O₃
Y₂O₃:Nd
Y₂O₃:Nd
Y₂O₃:Yb
Y₂O₃:Yb
Y₂O₃:Er
Y₂O₃:Er
Y₂O₃:Tm
Y₂O₃:Tm
Y₂O₃:Ho
Y₂O₃:Ho
Lu₂O₃
Lu₂O₃
Lu₂O₃:Nd
Lu₂O₃:Nd
Lu₂O₃:Yb
Lu₂O₃:Yb
Sc₂O₃
Sc₂O₃
Sc₂O₃:Yb
Sc₂O₃:Yb
MgAl₂O₄ (spinel)
MgAl₂O₄ (spinel)
ALON
ALON
3D Y₂O₃
3D Y₂O₃
3D Lu₂O₃
3D Lu₂O₃

Custom Orders

For custom laser-ceramic geometries, dopant systems or composite structures, please reach out to our engineering team — we reply within 48 hours.

Product specifications

Dopant systems
Nd / Yb / Er / Tm / Ho on YAG / Y₂O₃ / Lu₂O₃
Optical loss
< 0.2 %/cm
Slope efficiency
> 55 %
Max size
Φ100 × 20 mm
Density
≥ 99.99 % theoretical
Thermal conductivity
13 W/(m·K) @ 25℃