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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.
- Diameter/Width: 40 to 65 mm
- Focal Length: 125 to 787 mm
- Mirror Coatings: Bare Aluminum
- Mirror Materials: Other Mirror Material
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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.
- Diameter/Width: 40 to 60 mm
- Focal Length: 275 to 350 mm
- Mirror Coatings: Bare Aluminum
- Mirror Materials: Other Mirror Material
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Supplier: CeNing Optics Co., Ltd.
Description: Metallic Coatings are very broadband and relatively insensitive to incidence angle. They offer good performance at a low price. Although they are most commonly used, metallic reflective coatings are delicate and require crae during cleaning. They are only recommended for low power applications. The
- Diameter/Width: 5 to 76.2 mm
- Mirror Coatings: Uncoated, Protected Aluminum, Protected Gold, Silver, Other Mirror Coating
- Mirror Materials: BK7 Glass, Pyrex?, UV Grade Fused Silica, Other Mirror Material
- Mirror Shape: Round, Rectangular / Square
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Supplier: Thorlabs, Inc.
Description: %. Hot, cold, backside polished, ultrafast, D-shaped, elliptical, parabolic, concave, and laser line dielectric coated mirrors are available for more specialized applications.
- Diameter, Square Side, or Rectangular Length: 25.4 to 50.8 mm
- Filter Shape: Circular, Rectangular
- Filter Surface Quality: 20-10 Scratch / Dig, 60-40 Scratch / Dig
- Filter Type: Hot Mirrors, Cold Mirrors
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Supplier: Thorlabs, Inc.
Description: %. Hot, cold, backside polished, ultrafast, D-shaped, elliptical, parabolic, concave, and laser line dielectric coated mirrors are available for more specialized applications.
- Diameter/Width: 12.7 to 102 mm
- Mirror Coatings: Dielectric
- Mirror Materials: Fused Silica, Zerodur?
- Mirror Shape: Round, Rectangular / Square
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Supplier: Thorlabs, Inc.
Description: %. Hot, cold, backside polished, ultrafast, D-shaped, elliptical, parabolic, concave, and laser line dielectric coated mirrors are available for more specialized applications.
- Diameter, Square Side, or Rectangular Length: 25.4 to 50.8 mm
- Filter Shape: Circular, Rectangular
- Filter Surface Quality: 20-10 Scratch / Dig, 60-40 Scratch / Dig
- Filter Type: Hot Mirrors
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Supplier: Thorlabs, Inc.
Description: %. Hot, cold, backside polished, ultrafast, D-shaped, elliptical, parabolic, concave, and laser line dielectric coated mirrors are available for more specialized applications.
- Diameter/Width: 7 to 102 mm
- Mirror Coatings: Bare Aluminum, Bare Gold, Protected Gold, Silver
- Mirror Materials: Copper, Fused Silica, UV Grade Fused Silica, Zerodur?
- Mirror Shape: Round, Rectangular / Square, Elliptical
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Supplier: Shanghai Optics
Description: cylindrical lenses in plano convex, plano concave, or aspheric 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
- Lens Application: Ultraviolet
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It consists of a parabolic objective mirror of rectangular shape and a CCD camera in the image plane.
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manufacture of f/l.4 rectangular off-axis parabolic mirrors for the MODIL assessment mirror program (see fig. 2).
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This light is folded and re- collimated by the rectangular off-axis parabolic mirror .
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A two-element horn-reflector antenna for cosmic microwave background astronomy
The design con- sists of a pair of closely packed parabolic mirrors fed by two rect- angular corrugated horns, each at an offset angle of 75 to the axis of its mirror.
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Engineering overview of the conceptual design and hardware/software implementation proposed for the Magdalena Ridge Observatory Interferometer
parabolic mirrors located inside the rectangular structure with focus and height adjustments.
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Small-Scale High-Performance Optics
Our initial implementation approximatedthe imaging geometry with a rectangular sub- section of the full parabolic mirror image.
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Easily building with concrete: balcony plates with Carbon reinforcing
The approach presented in publications is used for the determination of the cross-section load capacity of the edge beam and the plate mirror under approach of the parabola - rectangular -diagram [16].
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Enhanced sensitivity of localized surface plasmon resonance biosensor by phase interrogation
Different from the conventional optical setup performing angular interrogation method, we fixed the laser and the detection system but the incident angle can be changed through the employment of a paired off-axis parabolic mirrors and a set of rectangular mirrors.
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