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Daheng New Epoch Technology, Inc. Achromatic Waveplate GCL-060813

Description
Achromatic Waveplates provide a constant phase shift independent of the wavelength of light that is used. Achromatic Waveplates are formed by using two different birefringent crystalline material quartz and magnesium fluoride. The relative phase difference between the two axes is either λ/4 or λ/2. The combination of quartz crystal and magnesium fluoride can minimize the effect of wavelength on phase delay, and a nearly flat spectral response can be obtained in the whole wavelength range of Achromatic Waveplates. The flat response of an Achromatic Waveplate is ideal for use with tunable lasers, multiple laser-line systems, and other broad spectrum sources. The fast axis direction of the waveplate is engraved on the outer shell. •Material: Crystalline quartz and Magnesium Fluoride •Diameter: 25.4±0.1 •Thickness: 6 •Retardation Accuracy: λ/100~λ/150 •Coatings: Multiple Layers AR coating
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Achromatic Waveplate - GCL-060813 - Daheng New Epoch Technology, Inc.
Beijing, China
Achromatic Waveplate
GCL-060813
Achromatic Waveplate GCL-060813
Achromatic Waveplates provide a constant phase shift independent of the wavelength of light that is used. Achromatic Waveplates are formed by using two different birefringent crystalline material quartz and magnesium fluoride. The relative phase difference between the two axes is either λ/4 or λ/2. The combination of quartz crystal and magnesium fluoride can minimize the effect of wavelength on phase delay, and a nearly flat spectral response can be obtained in the whole wavelength range of Achromatic Waveplates. The flat response of an Achromatic Waveplate is ideal for use with tunable lasers, multiple laser-line systems, and other broad spectrum sources. The fast axis direction of the waveplate is engraved on the outer shell. •Material: Crystalline quartz and Magnesium Fluoride •Diameter: 25.4±0.1 •Thickness: 6 •Retardation Accuracy: λ/100~λ/150 •Coatings: Multiple Layers AR coating

Achromatic Waveplates provide a constant phase shift independent of the wavelength of light that is used. Achromatic Waveplates are formed by using two different birefringent crystalline material quartz and magnesium fluoride. The relative phase difference between the two axes is either λ/4 or λ/2. The combination of quartz crystal and magnesium fluoride can minimize the effect of wavelength on phase delay, and a nearly flat spectral response can be obtained in the whole wavelength range of Achromatic Waveplates. The flat response of an Achromatic Waveplate is ideal for use with tunable lasers, multiple laser-line systems, and other broad spectrum sources. The fast axis direction of the waveplate is engraved on the outer shell. •Material: Crystalline quartz and Magnesium Fluoride •Diameter: 25.4±0.1 •Thickness: 6 •Retardation Accuracy: λ/100~λ/150 •Coatings: Multiple Layers AR coating

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Technical Specifications

  Daheng New Epoch Technology, Inc.
Product Category Waveplates and Retardation Plates
Product Number GCL-060813
Product Name Achromatic Waveplate
Material Quartz; Magnesium Flouride layer
Polarizer Features Anti-Reflection Coating
Surface Quality 100-150
Surface Flatness λ/2
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