Dielectric Mirror, Laser Line, Zerodur, 25.4 mm, λ/20, 632.8 nm

The 10Z40DM.4 Laser Line Dielectric mirror is a highly efficient reflector optimized for the 632.8 nm wavelength. This 1 inch (25.4 mm) diameter mirror is made from a 6.0 mm thick Zerodur substrate. Zerodur is a glass-ceramic material where thermal expansion is nominally zero. This extra stability can be critical for applications requiring diffraction limited performance. The DM.4 coating is designed for use with HeNe lasers and has a center wavelength of 632.8 nm. The coating achieves greater than 99% reflectance, from 0–45° angle of incidence, for any polarization. This multilayer dielectric coating is extremely durable, making it resistant to damage from repeated cleaning. This mirror has a λ/20 surface flatness and a 10-2 surface quality.
Specifications
- Wavelength RegionVIS
- Wavelength Range632.8 nm
- Mirror ShapeRound
- Diameter25.4 mm
- MaterialZerodur® or equivalent
- Coating TypeLaser Line Dielectric
- Coating CodeDM.4
- ReflectivityRs, Rp>99% @ 632.8 nm
- Surface Quality10-2 scratch-dig
- Surface Flatnessλ/20 at 632.8 nm
- Substrate Number10Z40
- Angle of Incidence0-45°
- Clear Aperture≥central 80% of diameter
- Back SurfaceGround
- Thickness6.0 mm
- Thickness Tolerance±0.25 mm
- Diameter Tolerance+0/-0.13 mm
- Chamfers0.25–0.76 mm face width
- Chamfers Angle Tolerance45° ±15°
- Cleaning
- Damage Threshold500 W/cm2 CW, 5 J/cm2 for 10 nsec pulses @ 694 nm

Resources & Downloads
Other
10Z40DM.4 RoHS Certificate(707 kB, PDF) DM.4 Raw Data.xlsx(54.4 kB, XLSX)
2D Product Drawings
Laser Line Dielectric Mirror Drawing(102.9 kB, PDF)
Related Products
Compatible
| Compare | Description | Drawings, CAD & Specs | Avail. | Price | ||
|---|---|---|---|---|---|---|
![]() | U100-A2KMirror Mount, ULTIMA®, Clear Edge, 1.0 in., 2 Locking Knobs | In Stock FREE 2-day shipping on thousands of products on Newport.com Learn More | ||||
![]() | 9809NFMirror Mount, Classic, Corner, 1.0 in., 3 Knobs | In Stock FREE 2-day shipping on thousands of products on Newport.com Learn More |



