- Small, <1cm³, Form Factor
- Greater than 70% Minimum Transmission and >30dB Minimum Isolation
- Input Apertures as Low as 1.60mm
- Broadband Performance with <2% Retardance Variation
- 12.7mm and 25.4mm Options Available
- λ/4 and λ/2 Retardance Options
- Multiple Wavelength Ranges Available
- Flat Response Over Each Broad Spectral Range
- λ/4 and λ/2 Retardance
- Mounted in Black Anodized Aluminum Housing
- Reduce Loss of P-Polarized Light
- Circular Profile When Oriented at 55.57°
- Great for Use in Laser Cavities
- Up to 67 dB Isolation for Ultimate Stability
- Up to 92% Transmission for Maximum Power
- 4.7mm Input Aperture
- High Extinction Ratios up to 200 000:1
- High Laser Damage Thresholds up to 5 J/cm2 @ 1064nm
- High Extinction Ratio of 10,000:1
- 45° Angle of Incidence
- Available for Nd:YAG Harmonics and HeNe Wavelengths
- Designed for Wavelengths Ranging from 2 - 30μm
- Various Substrates Available
- 360° Rotation Using Metric Polarizer Mounts
- Turn Polarized Light into Non-Polarized (Unpolarized) Light
- Designed for Polychromatic Light
- UV to IR Wavelength Range
- λ/4 and λ/2 Retardance
- Excellent Angular Field of View
- Birefringent Polymer Stack
- High Damage Threshold of 500 W/cm2
- Zero Order and Multiple Order Waveplates
- λ/4 and λ/2 Retardance
- Mounted in Black Anodized Aluminum Frame
- Zero Order Polymer Waveplates Also Available
- Converts Linear Polarization to Radial or Azimuthal
- Converts Circular Polarization to an Optical Vortex (Donut-Shaped Beam)
- High Damage Thresholds in the Nano- and Femtosecond Range
- Higher-Order Versions Can Generate Higher Order Polarization Patterns and Optical Vortices
- Multiple Polarization Materials Available
- Ordinary Rays Pass Through Undeviated
- Extraordinary Rays Deviate
- Wollaston Polarizers Also Available
- Multiple Polarization Materials Available
- UV to IR Ranges Offered
- Large Deviation of Ordinary and Extraordinary Rays
- Rochon Polarizers Also Available
- Transmit P-Polarized Light Without Reflection Losses
- Ideal for Polarization Separation in the IR Spectrum
- Germanium (Ge) or Zinc Selenide (ZnSe) Substrate Options
- Due to material supply chain disruptions with germanium, there may be increased lead times and price changes on our germanium products. For more information, please contact our customer service team.
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