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Supplier: EKSMA OPTICS
Description: Zero order wave plates are used to rotate the direction of polarization (with λ/2 plates) or convert linear into circular polarization or vice versa (with λ/4 plates). Zero order wave plates are made from two thin sections which
- Wavelength Range: 257 to 1,550 nm
- Clear Aperture: 17.000000000000004 mm
- Surface Flatness: λ/2, λ/4
- Retardation: Half Wave (λ/2), Quarter Wave (λ/4)
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Supplier: EKSMA OPTICS
Description: This Zero Order Air-Spaced Plate, made of single crystal quartz, has a clear aperture of 17 mm. For high power laser application.
- Wavelength Range: 257 to 1,064 nm
- Clear Aperture: 17.000000000000004 mm
- Surface Flatness: λ/2, λ/4
- Retardation: Half Wave (λ/2), Quarter Wave (λ/4)
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Supplier: EKSMA OPTICS
Description: Retardation of multiple order plates is only slightly more temperature dependent comparing with the zero order ones. Made from a single crystalline plate Polished to 1-1.5 mm thickness
- Wavelength Range: 257 to 1,550 nm
- Clear Aperture: 17.000000000000004 mm
- Surface Flatness: λ/10
- Retardation: Half Wave (λ/2), Quarter Wave (λ/4)
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Description: 190-7000nm (magnesium fluoride), and half/quarter/octadic wave retardation. Half Zero Order Waveplates are oriented for rotation the polarization plane of linearly polarized light, while the Quarter Zero Order Waveplates are for transform linearly
- Wavelength Range: 1,310 nm
- Clear Aperture: 18 mm
- Features: Waveplate / Retardation Plate
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Description: 190-7000nm (magnesium fluoride), and half/quarter/octadic wave retardation. Half Zero Order Waveplates are oriented for rotation the polarization plane of linearly polarized light, while the Quarter Zero Order Waveplates are for transform linearly
- Wavelength Range: 850 nm
- Clear Aperture: 18 mm
- Features: Waveplate / Retardation Plate
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Description: 190-7000nm (magnesium fluoride), and half/quarter/octadic wave retardation. Half Zero Order Waveplates are oriented for rotation the polarization plane of linearly polarized light, while the Quarter Zero Order Waveplates are for transform linearly
- Wavelength Range: 405 nm
- Clear Aperture: 18 mm
- Features: Waveplate / Retardation Plate
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Description: 190-7000nm (magnesium fluoride), and half/quarter/octadic wave retardation. Half Zero Order Waveplates are oriented for rotation the polarization plane of linearly polarized light, while the Quarter Zero Order Waveplates are for transform linearly
- Wavelength Range: 780 nm
- Clear Aperture: 18 mm
- Features: Waveplate / Retardation Plate
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Supplier: Newport MKS
Description: or λ/2 retardation. Higher orders cause retardation to vary dramatically with wavelength. Wave plates are sensitive to temperature changes. A typical multiple-order wave plate has a temperature coefficient of 0.0015 λ/°C, compared to 0.000 1λ/°C for a
- Wavelength Range: 1,064 nm
- Clear Aperture: 22.8 mm
- Diameter: 25.400000000000002 mm
- Thickness: 1 mm
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Supplier: Newport MKS
Description: λ/2 retardation. Higher orders cause retardation to vary dramatically with wavelength. Wave plates are sensitive to temperature changes. A typical multiple-order wave plate has a temperature coefficient of 0.0015 λ/°C, compared to 0.000 1λ/°C for a
- Wavelength Range: 488 nm
- Clear Aperture: 22.8 mm
- Diameter: 25.400000000000002 mm
- Thickness: 1 mm
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Supplier: Newport MKS
Description: λ/4 or λ/2 retardation. Higher orders cause retardation to vary dramatically with wavelength. Wave plates are sensitive to temperature changes. A typical multiple-order wave plate has a temperature coefficient of 0.0015λ/°C, compared to 0.0001λ/°C for a
- Wavelength Range: 1,064 nm
- Clear Aperture: 11.4 mm
- Diameter: 12.700000000000001 mm
- Thickness: 1 mm
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Supplier: Newport MKS
Description: λ/2 retardation. Higher orders cause retardation to vary dramatically with wavelength. Wave plates are sensitive to temperature changes. A typical multiple-order wave plate has a temperature coefficient of 0.0015 λ/°C, compared to 0.000 1λ/°C for a
- Wavelength Range: 266 nm
- Clear Aperture: 22.8 mm
- Diameter: 25.400000000000002 mm
- Thickness: 0.5 mm
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Supplier: Ross Optical Industries
Description: Made of a single quartz plate that is very thin, true zero order waveplates are provided either by themselves as a single plate for high damage threshold applications (greater than 1 GW/cm2), or as a cemented plate on a BK7 substrate to provide strength.
- Wavelength Range: 980 to 1,550 nm
- Diameter: 10.000000000000002 mm
- Thickness: 0.00004 to 0.00009 mm
- Surface Flatness: λ/2
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Supplier: Artifex Engineering
Description: Better performance than low or multiple order waveplates. The zero order waveplate is designed to give a retardance of zero full waves, plus the desired fraction. Zero order waveplate shows better performance than multiple order waveplates. It
- Wavelength Range: 266 to 1,550 nm
- Clear Aperture: 10.000000000000002 to 25.400000000000002 mm
- Diameter: 10.000000000000002 to 30 mm
- Thickness: 8 mm
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Waveplates and Retardation Plates - 30mm Dia. 1/2 Wave Quartz Waveplate Zero Order 800nm -- NT65-906Supplier: Edmund Optics Inc.
Description: Zero Order and Multiple Order Waveplates 1/4λ and 1/2λ Retardance Mounted in Black Anodized Aluminum Frame Zero Order Polymer Waveplates Also Available Available in multiple order and zero order, Quartz Waveplates (Retarders) are ideal for a
- Wavelength Range: 800 nm
- Clear Aperture: 23.000000000000004 mm
- Thickness: 6 mm
- Surface Quality: 20-10 Scratch / Dig
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Waveplates and Retardation Plates - 30mm Dia. 1/2 Wave Quartz Waveplate Zero Order 405nm -- NT83-930Supplier: Edmund Optics Inc.
Description: Zero Order and Multiple Order Waveplates 1/4λ and 1/2λ Retardance Mounted in Black Anodized Aluminum Frame Zero Order Polymer Waveplates Also Available Available in multiple order and zero order, Quartz Waveplates (Retarders) are ideal for a
- Wavelength Range: 405 nm
- Clear Aperture: 23.000000000000004 mm
- Thickness: 6 mm
- Surface Quality: 20-10 Scratch / Dig
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Supplier: Tower Optical Corporation
Description: order waveplates has been established by Tower Optical – a 3” zero order waveplate from stock. This super large zero order waveplate provides users with the ability to perform new techniques with large beam lasers. In addition, these waveplates are air spaced thus
- Wavelength Range: 405 to 1,064 nm
- Clear Aperture: 73.00000000000001 mm
- Diameter: 76.19995885202222 mm
- Surface Flatness: λ/10
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Supplier: CASTECH, Inc.
Description: Achromatic Zero-Order waveplate is made from two different substrate Material such as crystal quartz and magnesium fluoride. For the single material waveplates the working wavelength is very limited because of the dispersion of the material. While Achromatic Zero-Order
- Surface Flatness: λ/4
- Surface Quality: 40-20 Scratch / Dig
- Retardation: Half Wave (λ/2), Quarter Wave (λ/4)
- Material: Quartz
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Waveplates and Retardation Plates - 30mm Dia. 1/2 Wave Quartz Waveplate Zero Order 532nm -- NT48-490Supplier: Edmund Optics Inc.
Description: Zero Order and Multiple Order Waveplates 1/4λ and 1/2λ Retardance Mounted in Black Anodized Aluminum Frame Zero Order Polymer Waveplates Also Available Available in multiple order and zero order, Quartz Waveplates (Retarders) are ideal for a
- Wavelength Range: 532 nm
- Clear Aperture: 23.000000000000004 mm
- Thickness: 6 mm
- Surface Quality: 20-10 Scratch / Dig
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Supplier: Edmund Optics Inc.
Description: Zero Order and Multiple Order Waveplates 1/4λ and 1/2λ Retardance Mounted in Black Anodized Aluminum Frame Zero Order Polymer Waveplates Also Available Available in multiple order and zero order, Quartz Waveplates (Retarders) are ideal for a
- Wavelength Range: 1,064 nm
- Clear Aperture: 23.000000000000004 mm
- Thickness: 6 mm
- Surface Quality: 20-10 Scratch / Dig
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Supplier: Ross Optical Industries
Description: The zero order waveplate is designed to give a retardance of zero full waves, plus the desired fraction. Zero Order Waveplates show better performance than multiple order waveplates. They show a broader bandwidth and a lower sensitivity to temperature
- Wavelength Range: 266 to 1,550 nm
- Beam Deviation: 1.0000000000000009 arcsec
- Diameter: 15 mm
- Thickness: 1 mm
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Supplier: CASTECH, Inc.
Description: • Custom designs for other sizes, coatings and holder are also available upon request. • CASTECH's standard coatings are available.
- Surface Flatness: λ/8
- Surface Quality: 20-10 Scratch / Dig
- Retardation: Half Wave (λ/2), Quarter Wave (λ/4)
- Material: Quartz
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Supplier: Qioptiq
Description: Thickness < 0.5 mm ---------------------------- Type D: Double plate (zero order) Optically contacted quartz plates Retardation λ/2 or λ/4 Custom retardation plates for higher quantities on request.
- Wavelength Range: 488 to 1,064 nm
- Clear Aperture: 9 to 19 mm
- Diameter: 10.000000000000002 to 20.000000000000004 mm
- Thickness: 0.5 mm
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Supplier: CRYSTECH, Inc.
Description: CRYSTECH is dedicated to manufacturing high precision waveplate for solid-state laser systems. CRYSTECH offers quarter- and half-wave plates in a variety of options including Multiple Order Waveplates, Optical Cemented Zero-Order Waveplates, Air-paced
- Surface Flatness: λ/8
- Surface Quality: 20-10 Scratch / Dig
- Retardation: Half Wave (λ/2), Quarter Wave (λ/4)
- Features: Other Material, Waveplate / Retardation Plate
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Supplier: HG Optronics, Inc.
Description: difference when the two beams recombine. Half Waveplate A half waveplate rotates linearly polarized light to any desired orientation. The rotation angle is twice the angle between the incident polarized light and the optical axis. Therefore, the half waveplate can be used as a
- Retardation: Half Wave (λ/2), Quarter Wave (λ/4)
- Order: Multiple Order, Zero Order
- Features: Waveplate / Retardation Plate
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Supplier: CASTECH, Inc.
Description: Telecom waveplates are designed and manufactured specifically to meet the demanding requirements of telecom component designers. CASTECH provides telecom waveplate with many kinds of sizes , they are 91.5µm thick for the half-waveplate and 45.7µm thick for the quarter-waveplate at 1550nm. The
- Surface Flatness: λ/4
- Surface Quality: 40-20 Scratch / Dig
- Retardation: Half Wave (λ/2), Quarter Wave (λ/4)
- Material: Quartz
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Supplier: Meadowlark Optics, Inc.
Description: Meadowlark Optics now offers Wide Field Retarders, the latest innovation in near zero-order polymer retarder technology. At their design wavelength, Wide Field Retarders provide a consistent retardance value over a wide acceptance angle, out to 30° or more. Standard quarter- and
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Description: voltage output is generated using a ferrite core high voltage step up transformer which feeds a half wave Cockcroft-Walton voltage multiplier to obtain the specified high voltage output. Due to the fixed, high frequency conversion rate the output capacitance is small resulting in
- DC Input Voltage: 12 to 24 volts
- DC Output Voltage: 8,000 volts
- DC Output Current: 0.0005 amps
- DC Output Power: 4 watts
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16.3: Novel Polarization Conversion and Integration System for Projection Displays
The wavelength dependence of the retardance of this true- zero order half wave plate is proportional to 1/λ.
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Phase estimation with weak measurement using a white light source
Then the light passes two true zero order half wave plates (HWPs) with their optical axes perpendicular to each other and at 45◦ to the axis of the first prism.
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http://dspace.mit.edu/bitstream/handle/1721.1/16652/56473918-MIT.pdf?sequence=2
… and 7.5 cm respectively; L1, L2, L3 CVI FS plano lenses, focal lengths 28, 34 and –11.3 cm respectively; L4 Newport BK7 plano lens, focal length 10 cm; λ/2 CVI quartz zero order half wave plate ; P Alpine Research Optics …
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High-performance optical filter for the Australian laser airborne depth sounder
The wide field stages contain zero order half wave plates as part of the wide field element construction.
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The ZIMPOL high-contrast imaging polarimeter for SPHERE: design, manufacturing, and testing
Zero Order Half Wave Plate .
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https://www.duo.uio.no/bitstream/handle/10852/11232/jagielski.pdf?sequence=1
… the beam can be controlled in two different ways: in discrete steps, with the help of neutral density filters, and continuously, with the help of a combination of polarizing beam splitters and a zero order half wave plate , which together act as …
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X-Ray Lasers 2012
A polarizer associated with a zero or- der half wave plate was installed in the path of the reflected beam in order to adjust its energy.
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Imaging Methods for Novel Materials and Challenging Applications, Volume 3
For all experiments presented here, we used a rotating polarization obtained with a spinning zero order half wave plate .
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Double pulse quasi-collinear high harmonic generation scheme as a tool for X-ray laser plasma gain probing
A polarizer associated with a zero order half wave plate was installed in the path of the reflected beam in order to adjust its energy.
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Triple-ionization-induced dissociation of molecules in strong laser fields
A thin lens is used to focus the beam into the target chamber, and a zero order half wave plate is used before the focusing lens to control the polarization of the laser light to be either parallel (p polarization) or perpendicular …
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