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Supplier: Ross Optical Industries
Description: These first-surface elliptical flat mirrors are suitable for applications which require bending/folding light at precise angles with minimum wavefront distortion. Although they are typically offered with protected aluminum mirror coating, other coatings are available on request.
- Diameter/Width: 107.77000000000001 mm
- Thickness: 12.700000000000001 mm
- Surface Flatness: λ/4
- Mirror Shape: Elliptical
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Supplier: Qioptiq
Description: Front surface rectangular mirrors Low expansion material1) Highest reflectance for 450 nm to 12 μm wavelength Equal reflectance without absorption band Angle of incidence from 0° to 60° Resistant against environmental influences Double dielectric protection layer Suitable for short-pulse
- Wavelength Range: 450 nm
- Diameter/Width: 10.000000000000002 to 80.00000000000001 mm
- Thickness: 2 to 12.5 mm
- Mirror Shape: Elliptical
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Supplier: Edmund Optics Inc.
Description: Circular Profile When Oriented at 45° Ideal for Redirecting Light Multiple Sizes and Coatings Offered Our TECHSPEC® 1/8λ Precision Elliptical Flat Mirrors are ideal for research and astronomical applications. Because of their elongated major axis, they are suited to bending and folding
- Thickness: 15.88 mm
- Surface Flatness: λ/8
- Surface Quality: 60-40 Scratch / Dig
- Mirror Shape: Elliptical
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Supplier: Edmund Optics Inc.
Description: Circular Profile When Oriented at 45° Ideal for Redirecting Light Multiple Sizes and Coatings Offered Our TECHSPEC® 1/8λ Precision Elliptical Flat Mirrors are ideal for research and astronomical applications. Because of their elongated major axis, they are suited to bending and folding
- Thickness: 6.3500000000000005 mm
- Surface Flatness: λ/8
- Surface Quality: 60-40 Scratch / Dig
- Mirror Shape: Elliptical
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Supplier: Edmund Optics Inc.
Description: Circular Profile When Oriented at 45° Ideal for Redirecting Light Multiple Sizes and Coatings Offered Our TECHSPEC® 1/8λ Precision Elliptical Flat Mirrors are ideal for research and astronomical applications. Because of their elongated major axis, they are suited to bending and folding
- Thickness: 6.3500000000000005 mm
- Surface Flatness: λ/8
- Surface Quality: 60-40 Scratch / Dig
- Mirror Shape: Elliptical
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Supplier: Edmund Optics Inc.
Description: Circular Profile When Oriented at 45° Ideal for Redirecting Light Multiple Sizes and Coatings Offered Our TECHSPEC® 1/8λ Precision Elliptical Flat Mirrors are ideal for research and astronomical applications. Because of their elongated major axis, they are suited to bending and folding
- Thickness: 19.05 mm
- Surface Flatness: λ/8
- Surface Quality: 60-40 Scratch / Dig
- Mirror Shape: Elliptical
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Supplier: Qioptiq
Description: Front surface rectangular mirrors Low expansion material1) Highest reflectance for 450 nm to 12 μm wavelength Equal reflectance without absorption band Angle of incidence from 0° to 60° Resistant against environmental influences Double dielectric protection layerSuitable for short-pulse
- Wavelength Range: 450 nm
- Diameter/Width: 22.400000000000002 mm
- Thickness: 3.5000000000000004 mm
- Surface Flatness: λ/10
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Supplier: Knight Optical (UK) Ltd
Description: Elliptical mirrors are typically used at 45° where a circular cross section of a given size is asked for. Our stock range of elliptical mirrors are machined from standard sheets of enhanced aluminium giving 94% reflectivity for visible applications. Generally
- Wavelength Range: 450 to 650 nm
- Thickness: 3 mm
- Surface Quality: 60-40 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: Knight Optical (UK) Ltd
Description: Elliptical mirrors are typically used at 45° where a circular cross section of a given size is asked for. Our stock range of elliptical mirrors are machined from standard sheets of enhanced aluminium giving 94% reflectivity for visible applications. Generally
- Wavelength Range: 450 to 650 nm
- Thickness: 3 mm
- Surface Quality: 60-40 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: Knight Optical (UK) Ltd
Description: Elliptical mirrors are typically used at 45° where a circular cross section of a given size is asked for. Our stock range of elliptical mirrors are machined from standard sheets of enhanced aluminium giving 94% reflectivity for visible applications. Generally
- Wavelength Range: 450 to 650 nm
- Thickness: 3 mm
- Surface Quality: 60-40 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: Qioptiq
Description: Standard aluminium mirrors for the spectral ranges VIS to IR up to 10 µm or UV to 3 µm, respectively High reflection within a broad spectral and angle-of-incidence range Protected by an SiO2 overcoating (RAL)or MgF2 protective overcoating for the UV-region (RAL UV) Low expansion material 1)
- Mirror Shape: Elliptical
- Mirror Coatings: Protected Aluminum
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Supplier: Knight Optical (UK) Ltd
Description: Elliptical mirrors are typically used at 45° where a circular cross section of a given size is asked for. Our stock range of elliptical mirrors are machined from standard sheets of enhanced aluminium giving 94% reflectivity for visible applications. Generally
- Wavelength Range: 450 to 650 nm
- Thickness: 3 mm
- Surface Quality: 60-40 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: Newport MKS
Description: OpticsCage+ Adjustable Mirror Mount, Ø1 in. Elliptical Mirror, 90° Folding
- Clear Aperture: 23.900000000000002 mm
- Maximum Thickness: 6.400000000000001 mm
- Shape: Elliptical
- Features: Other
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Supplier: Newport MKS
Description: The 13E20BD.1 Broadband Dielectric Elliptical Mirror is an extremely versatile mirror for laboratory applications and highly efficient over a broad wavelength range. This 1.30 inch (33.02 mm) minor axis, 1.838 inch (46.70 mm) major axis, elliptical mirror is made
- Wavelength Range: 488 to 694 nm
- Thickness: 9.4 mm
- Surface Flatness: λ/10
- Mirror Coatings: Dielectric
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Supplier: Newport MKS
Description: The 18E20BD.2 Broadband Dielectric Elliptical Mirror is an extremely versatile mirror for laboratory applications and highly efficient over a broad wavelength range. This 1.838 inch (46.70 mm) minor axis, 2.60 inch (66.04 mm) major axis, elliptical mirror is made
- Wavelength Range: 700 to 950 nm
- Thickness: 12.5 mm
- Surface Flatness: λ/10
- Mirror Coatings: Dielectric
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Supplier: Newport MKS
Description: The 18E20BD.1 Broadband Dielectric Elliptical Mirror is an extremely versatile mirror for laboratory applications and highly efficient over a broad wavelength range. This 1.838 inch (46.70 mm) minor axis, 2.60 inch (66.04 mm) major axis, elliptical mirror is made
- Wavelength Range: 488 to 694 nm
- Thickness: 12.5 mm
- Surface Flatness: λ/10
- Mirror Coatings: Dielectric
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Supplier: EKSMA OPTICS
Description: Elliptical flat mirrors bend light at precise angles with minimum wave distortion due to elongated major axis. Precision 45 degree elliptical flat mirrors are ideal for technical and astronomical applications. Bend light at precise angles with minimum wave distortion
- Diameter, Square Side, or Rectangular Length: 25 to 42.5 mm
- Thickness: 3 to 4 mm
- Surface Quality: 20-10 Scratch / Dig
- Window Material: BK7 Glass, UV Grade Fused Silica
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Supplier: Qioptiq
Description: Accepts bonded elliptical mirrors or beamsplitter plates Insert in Cube or Mounting plate N 16
- Diameter, Square Side, Rectangular Length, or Elliptical Major Axis: 16 to 17.000000000000004 mm
- Shape: Circular
- Adjustment Type: Fixed
- Mount Type: Mirror Mount
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Supplier: ECOPTIK (CHANGCHUN) LTD
Description: end mirrors, hot and cold mirrors, thin-film beamsplitters, and the coatings on modern mirror shades. Dielectric mirror is an optical mirror made of thin layers of dielectric coating deposited on an optical substrate. We offer dielectric laser mirrors for
- Thickness: 1 to 20.000000000000004 mm
- Surface Flatness: λ/10, λ/2, λ/4, λ/5, λ/8
- Surface Quality: 20-10 Scratch / Dig, 40-20 Scratch / Dig
- Mirror Materials: BK7 Glass, Fused Silica
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Supplier: Carclo Technical Plastics
Description: Carclo is a world leading supplier of optics, and continual advances in light emitting diode (LED) technology have dictated that we offer a standard range of products to meet the most popular applications. These lenses are available in popular angular divergences and a range of holders that can be
- Diameter/Width: 26.500000000000004 mm
- Clear Aperture: 25 mm
- Central Hole Diameter: 8.700000000000001 mm
- Features: Other Mirror Material
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Supplier: Rocky Mountain Instrument/RMI Laser
Description: Phase Retarding Mirrors are designed to produce a specific phase shift between the S and P polarization components of an incident CO2 laser beam. Mirrors designed for zero phase shift maintain the incident polarization state in the reflected beam. Mirrors designed for λ/4 (90º)
- Surface Flatness: λ/20
- Surface Quality: 40-20 Scratch / Dig
- Mirror Materials: Copper
- Features: Flat Mirror, Other, Other Mirror Material
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Supplier: MOK Optics Co., Ltd.
Description: MOK Optics offer the first surface mirrors in circular, square and special dimensions. First surface mirrors are ideal for applications requiring the mirror to be mounted at 45° in order to produce a 90° bend in the light path. They are widely used for barcode/QR code scanning
- Wavelength Range: 400 to 1,200 nm
- Thickness: 1 to 5.000000000000001 mm
- Surface Quality: 60-40 Scratch / Dig
- Mirror Shape: Elliptical, Rectangular / Square, Round
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Supplier: Changchun Yutai Optics Co., Ltd.
Description: Dielectric coated mirrors is an optical mirror made of thin layers of dielectric coating layers with 99%(near total reflection) high reflection. We offer dielectric laser mirrors for laser lines, for narrowband or broadband wavelength ranges covering spectrum from UV to IR. They
- Surface Flatness: λ/10
- Surface Quality: 60-40 Scratch / Dig
- Mirror Coatings: Dielectric
- Mirror Shape: Elliptical, Rectangular / Square, Round
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Supplier: Argyle International, Inc.
Description: Spherical and flat Aluminum, silver, gold, or dielectric Substrates of glass, metal, Pyrex®, Zerodur®, or other materials. Round, elliptical, or rectangular Custom designs Argyle International offers custom optical components in a broad array of materials. Glass, coating, and reflective
- Mirror Materials: BK7 Glass, Fused Silica, Optical Crown Glass, Pyrex, UV Grade Fused Silica, Zerodur
- Mirror Coatings: Dielectric, Protected Aluminum, Protected Gold, Silver
- Features: Flat Mirror, Other Mirror Material, Spherical Mirror
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Supplier: Rainbow Research Optics, Inc.
Description: Mirrors (720-780 nm) Aluminum, Silver and Gold Mirrors (protected) Co2 Laser Optics Copper vapor Laser Mirrors Diode Laser Mirrors Dual Reflective Nd:YAG/YLF Laser Mirrors Er: Glass Laser Mirrors Excimer Laser & UV Optics Er:YAG Laser Mirrors
- Surface Flatness: λ/10
- Surface Quality: 10-5 Scratch / Dig
- Mirror Materials: BK7 Glass, Fused Silica, UV Grade Fused Silica
- Mirror Coatings: Bare Aluminum, Bare Gold, Dielectric, Protected Aluminum, Protected Gold, Silver
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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, off-axis elliptical
- Mirror Materials: Copper
- Features: Flat Mirror, Laser Mirror
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Supplier: Carclo Technical Plastics
Description: Carclo is a world leading supplier of optics, and continual advances in light emitting diode (LED) technology have dictated that we offer a standard range of products to meet the most popular applications. These lenses are available in popular angular divergences and a range of holders that can be
- Diameter/Width: 19.7 mm
- Clear Aperture: 18.4 mm
- Central Hole Diameter: 6.400000000000001 mm
- Features: Other Mirror Material
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Supplier: OptoSigma Corp.
Description: In general, ellipsoid has two focal points and the light passes through one focal point also passes through the other focal point after being reflected by the elliptical surface. By using this principle, if one light source is put on one focal point, it is possible to collect light at the
- Focal Length: 11 to 28.000000000000004 mm
- Secondary Focal Length: 78 to 288 mm
- Diameter/Width: 64 to 148 mm
- Thickness: 42 to 67 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: 9.5 to 500.00000000000006 mm
- Wavelength Range: 450 to 20,000 nm
- Diameter/Width: 12.699993142003704 to 75.00000000000001 mm
- Thickness: 3.2000000000000006 to 18.4 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%.
- Wavelength Range: 250 to 20,000 nm
- Diameter/Width: 7.000000000000001 to 101.59994513602963 mm
- Thickness: 2 to 19.1 mm
- Surface Flatness: λ/10, λ/20, λ/5, λ/8
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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%.
- Wavelength Range: 350 to 1,600 nm
- Diameter/Width: 12.699993142003704 to 101.59994513602963 mm
- Thickness: 6 to 19.1 mm
- Surface Flatness: λ/10
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Supplier: Advanced Optics, Inc.
Description: In addition to our in-stock optical mirrors, Advanced Optics provides custom fabrication and free engineering services. Our capabilities allow us to: Drill holes. Produce beveled substrates. Fabricate custom sizes and shapes. Manufacture polished concave and convex lenses. Supply custom
- Wavelength Range: 0.188 to 3,000 nm
- Diameter/Width: 3.174998285500926 to 203.19989027205926 mm
- Thickness: 1 to 38.09997942601111 mm
- Surface Flatness: λ/10, λ/2, λ/20, λ/4, λ/5, λ/8
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Supplier: Electro Optical Components, Inc.
Description: Spherically curved mirrors are commonly used in laser cavities and in laser beam expanders for high power lasers. A large range of concave and convex mirrors with radius of curvature from 5mm to 100 meters are available. Spherical mirrors can often be used in careful combination
- Mirror Types: Laser Mirror
- Features: Other
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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%.
- Wavelength Range: 400 to 1,100 nm
- Diameter/Width: 19 to 25.399986284007408 mm
- Thickness: 5.8 to 6.2 mm
- Surface Flatness: λ/10
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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 choice of
- Diameter/Width: 45.71997531121333 mm
- Surface Flatness: λ/8
- Mirror Shape: Elliptical
- Reflector / Parabolic Mirror Shape: Off-axis Parabolic
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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)
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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.
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More Information Top
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Properties And Performance Of Grazing Incidence Reflectors
CARS pairs of elliptical mirrors are shown to have negligible focusing errors for typical synchrotron source dimensions, and therefore comprise useful building blocks from which to construct grazing- incidence optical systems.
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Design of a full-hemispherical spectro-radiometer with high dynamic range for characterization of surface properties using multispectral BRDF data from VIS to ...
In further development of an existing semi-hemispherical spectro-radiometer without moving parts for angular resolution based on an elliptical mirror , a full-hemispherical device was designed.
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Development of a one-dimensional Wolter mirror for an advanced Kirkpatrick-Baez mirror
To realize achromatic full-field hard X-ray microscopy with a resolution better than 100 nm, we studied an imaging system consisting of an elliptical mirror and a hyperbolic mirror.
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Synchrotron Light Sources and Free-Electron Lasers
Successful development of elliptical mirrors helped attaining less than 100 nm focal spot in the conventional beamlines using Kirkpatrick-Baez focusing configuration, reaching 7 nm at the 1-km beamline.
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The squeeze-film air damping of circular and elliptical micro-torsion mirrors
The formulas of circular mirror and elliptical mirror are deduced independently, and their results match when the eccentricity of the elliptical mirror approaches zero.
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Elliptical Magnetic Mirror generated via Resistivity Gradients for Fast
Ignition ICF
When scaled up, the elliptical mirror scheme is still highly beneficial to Fast Ignition.
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Verification of scatterometer design
In continuation of last years paper on design rules for catadioptric scatterometers the present paper is dedicated to the metrological verification of the proposed design methods for devices with elliptical mirrors in off-axis alignment.
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Development of a one-dimensional Wolter mirror for achromatic full-field x-ray microscopy
We investigated a one-dimensional Wolter mirror (which consists of an elliptical mirror and a hyperbolic mirror) with the aim of developing an achromatic full-field X-ray microscope with a resolution of better than 50 nm.
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Fabrication technology of ultraprecise mirror optics to realize hard x-ray nanobeam
In our previous study, we realized a hard X-ray focused beam having a 180nm×90nm focal size using fabricated ellip- tical mirrors .
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Hemispherical radiometer for angle resolved measurement of IR scatter and radiation behaviour
In further development of a full hemispherical scatterometrical device based on an elliptical mirror , an angular resolved IR radiometer has been developed.
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