Newport MKS Datasheets for Waveplates and Retardation Plates
Waveplates and retardation plates are optical elements with two principal axes, one slow and one fast, which resolve an incident polarized beam into two mutually perpendicular polarized beams. The emerging beam recombines to form
Waveplates and Retardation Plates: Learn more
| Product Name | Notes |
|---|---|
| The 05RP02-16 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 532 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-24 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 632.8 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-30 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 850 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-31 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 905 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-32 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 1050 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-34 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 1064 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-40 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 1550 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-46 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 800 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-48 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 400 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-49 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 520 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-50 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 1030 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP02-51 Zero-Order Quartz Half Wave Plate has λ/2 retardation in a 12.7 mm diameter housing optimized for 1040 nm. Zero-order waveplates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-16 is a λ/4 Retardation Zero-Order Quartz Wave Plate, 12.7 mm in diameter and optimized for 532 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-24 is a λ/4 Retardation Zero-Order Quartz Wave Plate, 12.7 mm in diameter and optimized for 632.8 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-30 is a λ/4 Retardation Zero-Order Quartz Half Waveplate, 12.7 mm in diameter and optimized for 850 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-31 Zero-Order Quartz Quarter Wave Plate is 12.7 mm in diameter and optimized for 905 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth applications. These... | |
| The 05RP04-32 is a λ/4 Retardation Zero-Order Quartz Wave Plate, 12.7 mm in diameter and optimized for 1050 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-34 is a λ/4 Retardation Zero-Order Quartz Wave Plate, 12.7 mm in diameter and optimized for 1064 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-40 Zero-Order Quartz Quarter Wave Plate is 12.7 mm in diameter and optimized for 1550 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth applications. These... | |
| The 05RP04-46 is a λ/4 Retardation Zero-Order Quartz Quarter Waveplate, 12.7 mm in diameter and optimized for 800 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-48 is a λ/4 Retardation Zero-Order Quartz Half Waveplate, 12.7 mm in diameter and optimized for 400 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-49 is a λ/4 Retardation Zero-Order Quartz Half Waveplate, 12.7 mm in diameter and optimized for 520 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-50 is a λ/4 Retardation Zero-Order Quartz Half Waveplate, 12.7 mm in diameter and optimized for 1030 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP04-51 is a λ/4 Retardation Zero-Order Quartz Half Waveplate, 12.7 mm in diameter and optimized for 1040 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth... | |
| The 05RP12-02 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 05RP12-08 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 05RP12-12 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 05RP12-16 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 05RP12-24 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 05RP12-28 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 05RP12-34 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 05RP12-41 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 05RP14-02 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 05RP14-08 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 05RP14-12 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 05RP14-16 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 05RP14-24 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 05RP14-28 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 05RP14-34 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 05RP14-41 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 05RP22-05 Dual Wavelength Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this wave... | |
| The 05RP24-05 Dual Wavelength Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this wave... | |
| The 05RP32-780 True Zero-Order Polymer Half Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted... | |
| The 05RP32-830 True Zero-Order Polymer Half Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted... | |
| The 05RP34-1300 True Zero-Order Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted 1300 nm... | |
| The 05RP34-532 True Zero-Order Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted 532 nm... | |
| The 05RP34-780 True Zero-Order Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted 780 nm... | |
| The 10RP02-02 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 266 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-08 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 354.7 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-10 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 441.6 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-12 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 488 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-14 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 514.5 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-16 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 532 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-24 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 632.8 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-28 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 780 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-30 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 850 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-31 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 905 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-34 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 1064 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-36 Zero-Order Quartz Half Wave Plate is 25.4 mm in diameter and optimized for 1300 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth applications. These... | |
| The 10RP02-40 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 1550 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-41 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 413 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-46 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 800 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-48 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 400 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-49 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 520 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-50 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 1030 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP02-51 Zero-Order Quartz Half Wave Plate is a temperature insensitive phase retarder for moderate bandwidth 1040 nm applications. This zero-order waveplate is constructed of two quartz plates, air-spaced to... | |
| The 10RP04-02 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-08 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-10 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-12 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-14 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-16 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-24 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-28 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-30 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-31 Zero-Order Quartz Quarter Wave Plate is 25.4 mm in diameter and optimized for 905 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth applications. These... | |
| The 10RP04-34 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-36 Zero-Order Quartz Quarter Wave Plate is 25.4 mm in diameter and optimized for 1300 nm. Zero-order wave plates are temperature insensitive phase retarders for moderate bandwidth applications. These... | |
| The 10RP04-40 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-41 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-46 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-48 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-49 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-50 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP04-51 Zero-Order Quartz Wave Plate is a temperature insensitive phase retarder for moderate bandwidth applications. This zero-order wave plate is constructed of two quartz plates, air-spaced to allow for... | |
| The 10RP12-02 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 10RP12-08 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 10RP12-12 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 10RP12-16 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 10RP12-24 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 10RP12-28 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 10RP12-34 Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can rotate... | |
| The 10RP14-02 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 10RP14-08 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 10RP14-12 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 10RP14-16 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 10RP14-24 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 10RP14-28 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 10RP14-34 Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this waveplate can be... | |
| The 10RP22-05 Dual Wavelength Multiple-Order Half Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this wave... | |
| The 10RP24-05 Dual Wavelength Multiple-Order Quarter Wave Plate is a crystal quartz optic designed to differentially retard the phase of a polarized beam. With the proper phase shift, this wave... | |
| The 10RP32-1064 True Zero-Order Polymer Half Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted... | |
| The 10RP32-1550 True Zero-Order Polymer Half Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted... | |
| The 10RP32-632.8 True Zero-Order Polymer Half Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted... | |
| The 10RP34-1064 True Zero-Order Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted 1064 nm... | |
| The 10RP34-1550 True Zero-Order Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted 1550 nm... | |
| The 10RP34-532 True Zero-Order Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted 532 nm... | |
| The 10RP42-1 Achromatic Zero-order Half Waveplate has λ/2 retardation at the 545 nm center wavelength, and a ±λ/100 accuracy over the 460-655 nm wavelength range. The standard 25.4 mm outer... | |
| The 10RP42-2 Achromatic Zero-order Half Waveplate has λ/2 retardation at the 720 nm center wavelength, and a ±λ/100 accuracy over the 615-860 nm wavelength range. The standard 25.4 mm outer... | |
| The 10RP42-3 Achromatic Zero-order Half Waveplate has λ/2 retardation at the 840 nm center wavelength, and a ±λ/100 accuracy over the 715-1000 nm wavelength range. The standard 25.4 mm outer... | |
| 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... | |
| The 10RP44-1 Achromatic Quarter Wave Plate has λ/4 retardation at the 545 nm center wavelength and a ±λ/100 accuracy over the 460-644 nm wavelength range. The standard 25.4 mm outer... | |
| The 10RP44-2 Achromatic Quarter Wave Plate has λ/4 retardation at the 720 nm center wavelength and a ±λ/100 accuracy over the 615-860 nm wavelength range. The standard 25.4 mm outer... | |
| The 10RP44-3 Achromatic Quarter Wave Plate has λ/4 retardation at the 840 nm center wavelength and a ±λ/100 accuracy over the 715-1000 nm wavelength range. The standard 25.4 mm outer... | |
| The 10RP44-4 Achromatic Quarter Wave Plate has λ/4 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... | |
| The 10RP52-1B Achromatic Quartz-MgF2 Half Wave Plate consists of two different birefringent crystals: crystalline quartz and magnesium fluoride (MgF2). Enclosed in a 1 inch (25.4 mm) housing. This 18... | |
| The 10RP52-2B Achromatic Quartz-MgF2 Half Wave Plate consists of two different birefringent crystals: crystalline quartz and magnesium fluoride (MgF2). Enclosed in a 1 inch (25.4 mm) housing. This... | |
| The 10RP52-3B Achromatic Quartz-MgF2 Zero-Order Wave Plate consists of two different birefringent crystals: crystalline quartz and magnesium fluoride (MgF2). Enclosed in a 1 inch (25.4 mm) housing this 18 mm... | |
| The 10RP54-1B Achromatic Quartz-MgF2 Quarter Wave Plate consists of two different birefringent crystals: crystalline quartz and magnesium fluoride (MgF2). Enclosed in a 1 inch (25.4 mm) housing. This 18... | |
| The 10RP54-2B Achromatic Quartz-MgF2 Quarter Wave Plate consists of two different birefringent crystals: crystalline quartz and magnesium fluoride (MgF2). Enclosed in a 1 inch (25.4 mm) housing. This 18... | |
| The 10RP54-3B Achromatic Quartz-MgF2 Quarter Wave Plate consists of two different birefringent crystals: crystalline quartz and magnesium fluoride (MgF2). Enclosed in a 1 inch (25.4 mm) housing. This 18... | |
| The 20RP32-1064 True Zero-Order Polymer Half Wave Plate consists of a birefringent polymer film cemented between two high-precision, high efficiency, broadband antireflection coated N-BK7 windows. This construction ensures excellent transmitted... | |
| The 5540-U Bereks Variable Wave Plates modifies the polarization of collimated beams from any state to any other state with the flexibility, convenience, and precision previously found only in bulky... |