Newport MKS Achromatic Waveplate, Half-Wave, Polymer, 25.4 mm, 1060 nm, 900-1270 nm 10RP42-4

Description
The 10RP42-4 Achromatic Zero-order Half Waveplate has λ/2 retardation at the 1060 nm center wavelength, and a ±λ/100 accuracy over the 900-1270 nm wavelength range. The standard 25.4 mm outer diameter is convenient for mounting into Newport rotary mounts. It is designed to operate with a high degree of retardation accuracy over a broad wavelength range. This 1 inch diameter true zero-order wave plate is constructed using a stack of birefringent polymer films laminated between two high-precision BK 7 windows, each with a high efficiency, broadband antireflection coating. This construction ensures excellent transmitted wavefront quality, while minimizing beam deviation and surface reflection losses. The assembly is mounted in a black anodized aluminum housing for protection and ease of mounting, with the retarder fast axis marked for alignment reference. Achromatic polymer wave plates have better angular acceptance and less sensitivity to wavelength change than achromatic quartz–MgF2 wave plates. Retardation changes by less than 1% over a ±7° incidence angle and is maintained to better than ±λ/100 over the entire bandwidth. Optical transmittance varies slightly from the precision zero-order wave plates because several polymer layers are used in each achromatic wave plate.
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Description
The 10RP42-4 Achromatic Zero-order Half Waveplate has λ/2 retardation at the 1060 nm center wavelength, and a ±λ/100 accuracy over the 900-1270 nm wavelength range. The standard 25.4 mm outer diameter is convenient for mounting into Newport rotary mounts. It is designed to operate with a high degree of retardation accuracy over a broad wavelength range. This 1 inch diameter true zero-order wave plate is constructed using a stack of birefringent polymer films laminated between two high-precision BK 7 windows, each with a high efficiency, broadband antireflection coating. This construction ensures excellent transmitted wavefront quality, while minimizing beam deviation and surface reflection losses. The assembly is mounted in a black anodized aluminum housing for protection and ease of mounting, with the retarder fast axis marked for alignment reference. Achromatic polymer wave plates have better angular acceptance and less sensitivity to wavelength change than achromatic quartz–MgF2 wave plates. Retardation changes by less than 1% over a ±7° incidence angle and is maintained to better than ±λ/100 over the entire bandwidth. Optical transmittance varies slightly from the precision zero-order wave plates because several polymer layers are used in each achromatic wave plate.
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Achromatic Waveplate, Half-Wave, Polymer, 25.4 mm, 1060 nm, 900-1270 nm - 10RP42-4 - Newport MKS
Irvine, CA, United States
Achromatic Waveplate, Half-Wave, Polymer, 25.4 mm, 1060 nm, 900-1270 nm
10RP42-4
Achromatic Waveplate, Half-Wave, Polymer, 25.4 mm, 1060 nm, 900-1270 nm 10RP42-4
The 10RP42-4 Achromatic Zero-order Half Waveplate has λ/2 retardation at the 1060 nm center wavelength, and a ±λ/100 accuracy over the 900-1270 nm wavelength range. The standard 25.4 mm outer diameter is convenient for mounting into Newport rotary mounts. It is designed to operate with a high degree of retardation accuracy over a broad wavelength range. This 1 inch diameter true zero-order wave plate is constructed using a stack of birefringent polymer films laminated between two high-precision BK 7 windows, each with a high efficiency, broadband antireflection coating. This construction ensures excellent transmitted wavefront quality, while minimizing beam deviation and surface reflection losses. The assembly is mounted in a black anodized aluminum housing for protection and ease of mounting, with the retarder fast axis marked for alignment reference. Achromatic polymer wave plates have better angular acceptance and less sensitivity to wavelength change than achromatic quartz–MgF2 wave plates. Retardation changes by less than 1% over a ±7° incidence angle and is maintained to better than ±λ/100 over the entire bandwidth. Optical transmittance varies slightly from the precision zero-order wave plates because several polymer layers are used in each achromatic wave plate.

The 10RP42-4 Achromatic Zero-order Half Waveplate has λ/2 retardation at the 1060 nm center wavelength, and a ±λ/100 accuracy over the 900-1270 nm wavelength range. The standard 25.4 mm outer diameter is convenient for mounting into Newport rotary mounts. It is designed to operate with a high degree of retardation accuracy over a broad wavelength range. This 1 inch diameter true zero-order wave plate is constructed using a stack of birefringent polymer films laminated between two high-precision BK 7 windows, each with a high efficiency, broadband antireflection coating. This construction ensures excellent transmitted wavefront quality, while minimizing beam deviation and surface reflection losses. The assembly is mounted in a black anodized aluminum housing for protection and ease of mounting, with the retarder fast axis marked for alignment reference. Achromatic polymer wave plates have better angular acceptance and less sensitivity to wavelength change than achromatic quartz–MgF2 wave plates. Retardation changes by less than 1% over a ±7° incidence angle and is maintained to better than ±λ/100 over the entire bandwidth. Optical transmittance varies slightly from the precision zero-order wave plates because several polymer layers are used in each achromatic wave plate.

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Technical Specifications

  Newport MKS
Product Category Waveplates and Retardation Plates
Product Number 10RP42-4
Product Name Achromatic Waveplate, Half-Wave, Polymer, 25.4 mm, 1060 nm, 900-1270 nm
Material BK7
Polarizer Features Anti-Reflection Coating
Surface Quality 40-20 Scratch / Dig
Wavelength Range 900 to 1270 nm (9000 to 12700 Å)
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