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50.8mm Dia. 1030nm λ/4 Quartz Waveplate Zero Order

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Clear Aperture CA (mm):
35.0
Coating:
Laser V-Coat (1030nm)
Design Wavelength DWL (nm):
1030
Diameter (mm):
50.80 +0.00/-0.25
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Crystal Quartz
Retardance:
λ/4
Surface Quality:
20-10
Thickness (mm):
6.00 +0.00/-0.25
Type:
Crystalline Waveplate
Construction:
Crystalline
Transmitted Wavefront, P-V:
<λ/8 @ 632.8 nm
Parallelism (arcsec):
<3
Retardance Tolerance:
±λ/300
Temperature Coefficient (λ/°C):
0.0001
Coating Specification:
Rabs<0.2% @ on each surface
Damage Threshold, By Design: Damage threshold for optical components varies by substrate material and coating. Click here to learn more about this specification.
>10 J/cm2 @ 1064 nm, 10ns
Retardance Order:
0
Configuration:
Air Spaced

Regulatory Compliance

RoHS 2015:
Certificate of Conformance:
Reach 240:

Product Family Description

  • Zero Order and Multiple Order Waveplates
  • λ/4 and λ/2 Retardance
  • Mounted in Black Anodized Aluminum Frame
  • Zero Order Polymer Waveplates Also Available

Quartz Waveplates (Retarders) are available in multiple order and zero order. These waveplates are ideal for a range of applications. Multiple order waveplates are ideal for applications where the wavelength deviates less than ±1% from the design wavelength of the waveplate. For applications with a greater than ±1% deviation, zero order waveplates are recommended due to their increased bandwidth and lower sensitivity to temperature change. Quartz Waveplates (Retarders) have the fast axis marked on the edge of the mount to ease system integration.  

Laser Optics