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Supplier: Shanghai Optics
Description: If a spherical wave enters on axis, it won’t produce a collimated beam either. How Are Off-Axis Parabolic Mirrors Produced? Manufacturers can produce off-axis parabolic mirrors in several ways. One method involves using a rotating
- Reflector / Parabolic Mirror Shape: Off-axis Parabolic
- Mirror Types: Parabolic Mirror
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Supplier: Avantier Inc.
Description: Off-Axis Parabolic Mirrors and Their Characteristics An off-axis parabolic mirror is a specialized optical mirror cut from a larger parabolic mirror. Parabolic mirrors collimate light, and an
- Wavelength Range: 450 to 12,000 nm
- Mirror Coatings: Bare Aluminum, Bare Gold, Enhanced Aluminum, Protected Aluminum, Protected Gold
- Reflector / Parabolic Mirror Shape: Off-axis Parabolic
- Features: Other Mirror Coating
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Supplier: Shimadzu Corporation
Description: An off-axis parabolic mirror converts plane waves into spherical ones and vice versa with high accuracy. This aspherical mirror is indispensable for spectrometers and astronomical optical instruments which require high resolution.
- Focal Length: 125.00000000000001 to 787.0000000000001 mm
- Secondary Focal Length: 134 to 789.2 mm
- Diameter/Width: 40.00000000000001 to 65 mm
- Thickness: 16 mm
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Supplier: Thorlabs, Inc.
Description: the UV, VIS, and IR spectral regions. The metallic mirror coatings have high reflectivity over the widest spectral region, while the broadband dielectric mirrors have a narrower spectral range of operation; the average reflectivity throughout the specified region is greater than 99%.
- Focal Length: 7.5 to 260.2 mm
- Secondary Focal Length: 15 to 152.4 mm
- Wavelength Range: 250 to 20,000 nm
- Diameter/Width: 12.699993142003704 to 76.19995885202222 mm
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Supplier: Daheng New Epoch Technology, Inc.
Description: Mounting Adapters for Ø1/2", Ø1", and Ø2" Versions: Externally SM-Threaded Mounting Adapters Unthreaded Adapters for Use in Mirror Mounts Post Mounting Adapters with 8-32 (M4) Taps Optional to Off-Axis Parabolic Mirrors with Holes Parallel to Focused Beam
- Wavelength Range: 800 to 20,000 nm
- Diameter/Width: 50.800000000000004 mm
- Reflector / Parabolic Mirror Shape: Off-axis Parabolic
- Mirror Types: Parabolic Mirror
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Supplier: Shimadzu Corporation
Description: This aspherical mirror, which focuses parallel light to the focus point without aberrations, or converts a point light source from the focuse point into parallel light without aberrations, is used in spectroscopic systems that require high resolution.
- Focal Length: 275 to 350 mm
- Secondary Focal Length: 279.1 to 351 mm
- Diameter/Width: 40.00000000000001 to 60 mm
- Thickness: 10.000000000000002 to 16 mm
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Supplier: Specialty Components, Inc.
Description: Diamond turned first-surface Aluminum mirrors provide a highly efficient parabolic focus of light in the infrared range. Guaranteed at ½ , ¼ or 1/8 waveform accuracy with <16nm Ra surface finish. Select from protected Aluminum, protected Gold or untreated coatings combined with your
- Diameter/Width: 22.859987655606666 mm
- Surface Flatness: λ/8
- Mirror Shape: Elliptical
- Reflector / Parabolic Mirror Shape: Off-axis Parabolic
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Supplier: Newport MKS
Description: The UPA2-OAP is a versatile adaptor used to provide a mounting interface for Newport's family of Replicated Off-Axis Parabolic Mirrors. It allows mounting in three ways: vertical post mounting, horizontal post mounting, and can be mounted into any positioner that can hold
- Diameter, Square Side, Rectangular Length, or Elliptical Major Axis: 50.800000000000004 mm
- Mount Type: Mirror Mount
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Supplier: Edmund Optics Inc.
Description: Aluminum Substrate Mirrors Available in 15°, 30°, 45°, 60°, or 90° Off-Axis Options Aluminum and Gold Coating Options Unlike standard parabolic mirrors, Off-Axis Parabolic Metal Mirrors direct and focus incident collimated light at a
- Focal Length: 516.8100000000001 mm
- Diameter/Width: 50.800000000000004 mm
- Surface Flatness: λ/4
- Features: Other Mirror Material
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Supplier: Edmund Optics Inc.
Description: Aluminum Substrate Mirrors Available in 15°, 30°, 45°, 60°, or 90° Off-Axis Options Aluminum and Gold Coating Options Unlike standard parabolic mirrors, Off-Axis Parabolic Metal Mirrors direct and focus incident collimated light at a
- Focal Length: 148.79 mm
- Diameter/Width: 25.400000000000002 mm
- Surface Flatness: λ/4
- Features: Other Mirror Material
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Supplier: Edmund Optics Inc.
Description: Aluminum Substrate Mirrors Available in 15°, 30°, 45°, 60°, or 90° Off-Axis Options Aluminum and Gold Coating Options Unlike standard parabolic mirrors, Off-Axis Parabolic Metal Mirrors direct and focus incident collimated light at a
- Focal Length: 516.8100000000001 mm
- Diameter/Width: 101.60000000000001 mm
- Surface Flatness: λ/4
- Features: Other Mirror Material
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Supplier: Edmund Optics Inc.
Description: Aluminum Substrate Mirrors Available in 15°, 30°, 45°, 60°, or 90° Off-Axis Options Aluminum and Gold Coating Options Unlike standard parabolic mirrors, Off-Axis Parabolic Metal Mirrors direct and focus incident collimated light at a
- Focal Length: 387.6 mm
- Diameter/Width: 101.60000000000001 mm
- Surface Flatness: λ/4
- Features: Other Mirror Material
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Supplier: Newport MKS
Description: The 50329AL Off-Axis Replicated Parabolic Mirror is 1.50 inches in diameter, with an effective focal length of 2.00 inches, and coated with Protected Aluminum. These standard off-axis parabolic mirrors are circular segments from one side of a
- Focal Length: 50.799972568014816 mm
- Wavelength Range: 190 to 2,000 nm
- Diameter/Width: 38.1 mm
- Surface Quality: 60-40 Scratch / Dig
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Supplier: Newport MKS
Description: The 50332AL Off-Axis Replicated Parabolic Mirror is 1.50 inches in diameter, with an effective focal length of 8.00 inches, and coated with Protected Aluminum. These standard off-axis parabolic mirrors are circular segments from one side of a
- Focal Length: 203.19989027205926 mm
- Wavelength Range: 190 to 2,000 nm
- Diameter/Width: 38.1 mm
- Surface Quality: 60-40 Scratch / Dig
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Supplier: Newport MKS
Description: The 50328AL Off-Axis Replicated Parabolic Mirror is 1.50 inches in diameter, with an effective focal length of 0.80 inches, and coated with Protected Aluminum. These standard off-axis parabolic mirrors are circular segments from one side of a
- Focal Length: 20.319989027205928 mm
- Wavelength Range: 190 to 2,000 nm
- Diameter/Width: 38.1 mm
- Surface Quality: 60-40 Scratch / Dig
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Supplier: Zygo Corporation
Description: Types ZYGO produces a variety of types high quality custom optical mirrors, including: Aspheric mirrors EUV Mirrors Flat mirrors Light-Weighted Mirrors Monolithic Mirrors Off-axis mirrors Parabolic mirrors Spherical
- Diameter/Width: 304.7998354080889 to 812.799561088237 mm
- Diameter: 304.7998354080889 to 812.799561088237 mm
- Mirror Types: Flat Mirror, Parabolic Mirror, Reflector, Spherical Mirror
- Reflector / Parabolic Mirror Shape: Off-axis Parabolic
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Supplier: Zygo Corporation
Description: compared to traditional techniques. Types In addition to flat mirrors, ZYGO produces a variety of types high quality custom optical mirrors, including: Aspheric mirrors EUV Mirrors Light-Weighted Mirrors Monolithic Mirrors Off-axis
- Reflector / Parabolic Mirror Shape: Off-axis Parabolic
- Features: Other, Other Mirror Material
- Mirror Types: Parabolic Mirror, Reflector, Spherical Mirror
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Supplier: Zygo Corporation
Description: critical. Types ZYGO produces a variety of types high quality custom optical mirrors, including: Aspheric mirrors EUV Mirrors Flat mirrors Light-Weighted Mirrors Monolithic Mirrors Off-axis mirrors Parabolic mirrors
- Mirror Types: Flat Mirror, Parabolic Mirror, Reflector, Spherical Mirror
- Features: Other, Other Mirror Material
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Supplier: OptoSigma Corp.
Description: TCPA is curved mirror that converts diverging light from a point of light source into parallel light. By making the paraboloid a curved surface, it is possible to retrieve parallel light more efficiently than spherical concave mirror. It is used as a lamp reflector of the lamp house of
- Focal Length: 12.5 to 30 mm
- Diameter/Width: 100 to 152 mm
- Thickness: 42 to 76.5 mm
- Central Hole Diameter: 18 to 35 mm
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Supplier: Shanghai Optics
Description: copper and aluminum mirrors for a variety of demanding applications. See more reference articles here. Optical Mirror Manufacturing Process: Single Point Diamond Turning(SPDT) is a manufacturing technique for producing off-axis parabolic (OAP) mirrors,
- Mirror Materials: Copper
- Mirror Types: Flat Mirror, Laser Mirror
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Supplier: Shanghai Optics
Description: A Convex Spherical Mirror is a mirror which curves inward away from the incident light. Shanghai Optics produces high quality convex spherical mirrors with a variety of diameters and focal lengths. These precision mirrors are ideal for imaging applications, specifically,
- Mirror Materials: BK7 Glass, Fused Silica, Optical Crown Glass, UV Grade Fused Silica
- Mirror Coatings: Enhanced Aluminum, Protected Gold
- Mirror Types: Spherical Mirror
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Supplier: Shanghai Optics
Description: shape. Special lenses available on request include bi-convex or double concave cylindrical lenses, parabolic mirrors, cylindrical ellipsoidal mirrors and double curved cylindrical lenses. Off-axis cylindrical mirrors, angled cylindrical mirrors, or
- Lens Type: Cylindrical Lens
- Lens Application: Ultraviolet
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Off-Axis Parabolic Mirrors OAP Mirrors: Applications Across Industries Precision Fabrication and Integration of Off-Axis Parabolic Mirrors (read more)
Browse Optical Mirrors Datasheets for Avantier Inc. -
— delivering mirrors built for demanding optical systems. Off-Axis Parabolic Mirrors (OAP Mirrors): Avantier’s Off-Axis Parabolic Mirrors (OAP Mirrors) are (read more)
Browse Optical Mirrors Datasheets for Avantier Inc. -
metrology, thin-film mirrors are nearly indispensable. While these components typically deliver excellent performance, certain applications require careful consideration of potential distortion effects that can impact system-level performance. This paper focuses on phase effects and how they can result (read more)
Browse Optical Mirrors Datasheets for Alluxa, Inc. -
Crystech’s Honeycomb Mirrors, also known as compound eye lenses, are engineered to transform laser beams into a precise hexagonal lattice pattern. Achieving high efficiency (95% at 1064?nm and 532?nm), these mirrors enable consistent and effective treatments (read more)
Browse Laser Mirrors Datasheets for CRYSTECH, Inc. -
In precision laser systems, engineers often face challenges with signal loss, unstable optical paths, and mirror degradation under high-power exposure. Conventional mirrors can introduce energy inefficiencies and limit system (read more)
Browse Optical Mirrors Datasheets for CASTECH, Inc. -
High-power Q-switch laser systems often face beam instability, poor optical performance, and long lead times for high-quality components. Conventional mirrors may compromise precision or delay project schedules (read more)
Browse Optical Mirrors Datasheets for CRYSTECH, Inc. -
Plano metallic mirrors are a common optical component used in a wide range of applications such as laser systems, optical instruments, spectral analysis and industrial processing. The core of the process is to coat a plano glass substrate (e.g. B270, D263T, fused silica, etc.) with a metallic reflective coating to achieve high reflectivity.
(read more)
Browse Optical Mirrors Datasheets for Changchun Yutai Optics Co., Ltd. -
What are the properties of hot mirrors? Reducing Heat Reflects >90% @NIR and IR Transmits >85% @VIS AOI: 0° or 45° What kinds of (read more)
Browse Optical Mirrors Datasheets for Changchun Yutai Optics Co., Ltd. -
Types of Spherical Mirrors Concave Spherical Mirrors: These mirrors curve inward and have a reflective surface that can focus light. They have a positive focal length and a positive radius of curvature. Concave mirrors magnify (read more)
Browse Optical Mirrors Datasheets for Avantier Inc. -
Mirrors vs. Galvo & Solid-State Scanners A (read more)
Browse Optical Mirrors Datasheets for Avantier Inc.
Conduct Research Top
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Off-Axis Parabolic Mirror
Off-axis parabolic mirror (OAP) can get beam focused or collimated at certain angles, and infinite focus is possible, too. The total reflection design eliminates the absorption loss, chromatic aberration, dispersion and phase delay due to transmissive optical element. Sometimes there is a small
More Information Top
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Ultrafast Optics V
And this pulse was focused on Argon gas jet with an f/3.2 off axis parabolic mirror .
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Ultrafast Phenomena XIV
The overall compression can be var- ied without changing the achromatic behavior by scaling the prism separation to- gether with the focal length of the off axis parabolic mirrors .
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Optical design for translation of THz medical imaging technology
OFF AXIS PARABOLIC MIRROR TRADEOFFS Off-axis parabolic mirrors are the most common focusing optic employed in THz medical imaging.
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http://krex.k-state.edu/dspace/bitstream/handle/2097/408/MahendraShakya2007.pdf?sequence=1
Harmonics were generated by focusing 30 fs , 1kHz and 0.8 watt laser onto the argon gas target with an off axis parabolic mirror of focal length 250 mm.
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http://research-repository.st-andrews.ac.uk/bitstream/10023/1713/3/DavidWalshPhDThesis.pdf
This collimated beam was then focussed through a waist using an f=50.8mm off axis parabolic mirror (90° deflection).
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Finding the dispersion relations for lamb-type waves in a concave piezoelectric plate by optical visualization of the ultrasound field radiated into a fluid
Ultrasound waves were optically visualized in the fluid by the schlieren method on a spe cially designed setup, in which off axis parabolic mirrors were used to implement the dark field method.
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Optical Shop Testing 3rd Edition Complete Document
Gerth H. L., R. E. Sladky, M. J. Besik, and C. A. Washington, ‘‘Fabrication of Off Axis Parabolic Mirrors ,’’ Opt. Eng., 17, 588 (1978).
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Frida integral field unit opto-mechanical design
It also has a Schwarzschild relay based on two off axis spherical mirrors and an afocal system of two parabolic off axis mirrors .
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Operational experience of contamination and damage of the larger aperture optics in the HELEN laser facility vacuum system at 1053 and 527 nanometres
Focussing systems using off axis parabolic mirrors have sustained contamination from debris and a dielectric protected silver reflector used for green light suffered laser induced damage.
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https://dspace.lib.cranfield.ac.uk/bitstream/1826/4425/1/Dackson_Masiyano_thesis_2008.pdf
Key, L1, L2, L3; lens, APC; angle polished connector, BS; beam splitter...............7-156 Figure 7-7: Use of an off axis parabolic mirror to improve light collection efficiency of the configuration shown in Figure 7-6....................................................................7-159 Figure 7-8 …
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