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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
- 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: Tower Optical Corporation
Description: Hot Mirrors are used in applications when there is the requirement to separate visible light from heat. The hot mirror accomplishes this by reflecting the heat. The use of Borosilicate type glass allows operation in high temperatures. Operation at an AOI of 0º is preferred. The
- Wavelength Range: 420 to 700 nm
- Diameter/Width: 15 to 300.00000000000006 mm
- Thickness: 3.3000000000000003 mm
- Surface Flatness: λ/2
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Supplier: Shanghai Optics
Description: Shanghai Optics is a custom optics manufacturer with over 55 years of optics manufacturing experience. We produce high precision Broadband Dielectric Mirrors according to customer’s specifications. These mirrors have the same exceptional specifications as our laser
- Mirror Materials: BK7 Glass
- Mirror Coatings: Dielectric
- Mirror Types: Flat Mirror, Laser Mirror
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Supplier: Tower Optical Corporation
Description: Cold Mirrors are used where the requirements are to reflect visible light and remove the heat by transmission. Operation at an AOI of 45º is preferred. The most common wavelength range for transmission through the cold mirror is 800 - 1200nm. The average transmission range is T>85%.
- Wavelength Range: 800 to 1,200 nm
- Diameter/Width: 15 to 300.00000000000006 mm
- Thickness: 3.3000000000000003 mm
- Surface Flatness: λ/2
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Supplier: OptoSigma Corp.
Description: Ultra Broadband Dielectric Mirrors are manufactured using all dielectric multi-layer coatings of alternating high and low index layers. These are specifically designed for use at 45 degrees angle of incidence. The mirrors are designed to achieve broad reflection like
- Wavelength Range: 245 to 2,000 nm
- Diameter/Width: 25.400000000000002 to 50 mm
- Thickness: 5.000000000000001 to 8 mm
- Surface Flatness: λ/10
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Supplier: Changchun Sunday Optics Co., Ltd.
Description: under pressure.This makes the dome ideal for underwater environments and applications such as camera dome ports and dive Windows.Sunday Optics is the mainly manufacture of optical glass dome lens, and also own the advance machine and test equipment.Sunday Optics manufacture Sapphire window,
- Diameter/Width: 2 to 800 mm
- Surface Flatness: λ/10
- Surface Quality: 10-5 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: OptoSigma Corp.
Description: All dielectric designs are much more resistant to laser damage than typical mirrors and are suitable for use with high power laser systems. —¦All Dielectric Mirrors for High Power Laser are manufactured using dielectric multi-layer coatings of alternating high and
- Wavelength Range: 193 to 1,064 nm
- Diameter/Width: 25.400000000000002 to 50 mm
- Thickness: 5.000000000000001 to 8 mm
- Surface Flatness: λ/10
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Supplier: OptoSigma Corp.
Description: You can use the 0-45° Wide Incidence Dielectric Mirrors for an optical system for reciprocating the light between two mirrors or Michelson interferometer, if you want to use a mirror at an incident angle of 45 ° or less. When used at 45 degree and 0 degree incidence
- Wavelength Range: 400 to 1,550 nm
- Diameter/Width: 10.000000000000002 to 40.00000000000001 mm
- Thickness: 3 to 8 mm
- Surface Flatness: λ/10
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Supplier: Daheng New Epoch Technology, Inc.
Description: These mirrors provide high reflectance over a broad bandwidth, and are ideal for tunable laser and white light applications. They are intended for use at 45 incidence. Normal incidence is available on special request
- Wavelength Range: 450 to 1,400 nm
- Diameter/Width: 20.000000000000004 to 40.00000000000001 mm
- Thickness: 4 mm
- Surface Flatness: λ/8
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Supplier: Daheng New Epoch Technology, Inc.
Description: These Nd:YAG/YLF laser mirrors are designed for high reflectance at the appropriate dual wavelengths. They are intended for use at either 45°or normal incidence. We also offer dual wavelength mirrors for use at the fundamental and second harmonic wavelengths.
- Wavelength Range: 532 to 1,064 nm
- Diameter/Width: 12.700000000000001 to 25.400000000000002 mm
- Thickness: 4 mm
- Surface Flatness: λ/8
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Supplier: Daheng New Epoch Technology, Inc.
Description: These laser line mirrors are designed for high reflectance with high laser damage threshold at specific laser wavelengths, suitable for laser cavities or other laser grade substrates using physical vapor deposition (PVD) technologies. These coatings are extremely durable, making them
- Wavelength Range: 441.6 to 1,310 nm
- Diameter/Width: 20.000000000000004 to 40.00000000000001 mm
- Thickness: 4 mm
- Surface Flatness: λ/8
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Description: glass material is fabricated using SiO2 with few inclusions. UV Fused Silica is known for its superior optical properties, in addition to high scratch resistance and low thermal expansion. Mirror substrates are then coated with a broadband dielectric coating. The technique of
- Surface Quality: 10-5 Scratch / Dig
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Supplier: Newport MKS
Description: The 10Z20BD.1 Broadband Dielectric Mirror is an extremely versatile mirror for laboratory applications and highly efficient over a broad wavelength range. This 1 inch (25.4 mm) diameter mirror is made from a 6.0 mm thick Zerodur substrate. Zerodur is a
- Wavelength Range: 488 to 694 nm
- Diameter/Width: 25.400000000000002 mm
- Thickness: 6 mm
- Surface Flatness: λ/10
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Supplier: Newport MKS
Description: The 20Z40BD.1 Broadband Dielectric Mirror is an extremely versatile mirror for laboratory applications and highly efficient over a broad wavelength range. This 2 inch (50.8 mm) diameter mirror is made from a 12.7 mm thick Zerodur substrate. Zerodur is a
- Wavelength Range: 488 to 694 nm
- Diameter/Width: 50.800000000000004 mm
- Thickness: 12.700000000000001 mm
- Surface Flatness: λ/20
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Supplier: Newport MKS
Description: The 3MD20BD.1 Broadband Dielectric Mirror is an extremely versatile mirror for laboratory applications and highly efficient over a broad wavelength range. This 1.181 inch (30.0 mm) diameter mirror is made from a 6.0 mm thick Borofloat® 33 substrate. Borofloat® 33 has low
- Wavelength Range: 488 to 694 nm
- Diameter/Width: 30 mm
- Thickness: 6 mm
- Surface Flatness: λ/10
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Supplier: Newport MKS
Description: The 30Z40BD.1 Broadband Dielectric Mirror is an extremely versatile mirror for laboratory applications and highly efficient over a broad wavelength range. This 3 inch (76.2 mm) diameter mirror is made from a 14.7 mm thick Zerodur substrate. Zerodur is a
- Wavelength Range: 488 to 694 nm
- Diameter/Width: 76.2 mm
- Thickness: 14.7 mm
- Surface Flatness: λ/20
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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
- Mirror Materials: BK7 Glass, Fused Silica, Optical Crown Glass, Pyrex, UV Grade Fused Silica, Zerodur
- Mirror Coatings: Dielectric, Protected Aluminum, Protected Gold, Silver
- Mirror Types: Flat Mirror, Spherical Mirror
- Features: Other Mirror Material
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Supplier: Foctek Photonics, Inc.
Description: FOCtek offers dielectric coated mirrors and metal coated mirrors which are made of substrate such as Bk7, K9, Fused Silica, CaF2, Sapphire and so on.
- Diameter/Width: 10.000000000000002 to 50.800000000000004 mm
- Thickness: 2 to 6.3500000000000005 mm
- Surface Flatness: λ/10
- Surface Quality: 10-5 Scratch / Dig, 60-40 Scratch / Dig
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Supplier: Changchun Sunday Optics Co., Ltd.
Description: Optical Mirrors are used for beam turning, interferometry, imaging, or illumination.Using polished glass or metal as the substrate, the light beam hits the surface to form mirror reflection.In order to obtain as much reflected light as possible, the substrate is often coated
- Diameter/Width: 2 to 800 mm
- Surface Flatness: λ/10
- Surface Quality: 10-5 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: Knight Optical (UK) Ltd
Description: surface plane mirrors are made from good quality float glass and are generally available in thicknesses of 1mm, 3mm and 6mm thk as standard. We stock these general purpose plane mirror front surface in a wide range of coatings to meet most applications:... Enhanced aluminium
- Wavelength Range: 700 to 1,064 nm
- Thickness: 3 mm
- Surface Quality: 60-40 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: Knight Optical (UK) Ltd
Description: surface plane mirrors are made from good quality float glass and are generally available in thicknesses of 1mm, 3mm and 6mm thk as standard. We stock these general purpose plane mirror front surface in a wide range of coatings to meet most applications:... Enhanced aluminium
- Wavelength Range: 700 to 1,064 nm
- Thickness: 3 mm
- Surface Quality: 60-40 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: CeNing Optics Co., Ltd.
Description: High Energy Reflective Dielectric Coated Mirrors provide excellent performance over a specific wavelength range. The maximum reflectivity can be up to 99.9% at a specific wavelength and angle of incidence. Dielectric coatings exhibit superior durability and damage resistance.
- Diameter/Width: 5.000000000000001 to 76.2 mm
- Thickness: 0.5 to 10.000000000000002 mm
- Surface Flatness: λ/4, λ/8
- Surface Quality: 10-5 Scratch / Dig, 60-40 Scratch / Dig
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Supplier: Knight Optical (UK) Ltd
Description: These precision plane mirrors are our best quality mirrors. Made in low expansion glass for optimum stability they are flat to λ/10. Knight Optical's standard stock precision grade mirrors are coated with enhanced aluminium and dielectric coating for use in laser
- Wavelength Range: 450 to 700 nm
- Thickness: 6 mm
- Surface Flatness: λ/10
- Surface Quality: 40-20 Scratch / Dig
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Supplier: Knight Optical (UK) Ltd
Description: surface plane mirrors are made from good quality float glass and are generally available in thicknesses of 1mm, 3mm and 6mm thk as standard. We stock these general purpose plane mirror front surface in a wide range of coatings to meet most applications:... Enhanced aluminium
- Wavelength Range: 450 to 700 nm
- Thickness: 3.3000000000000003 mm
- Surface Quality: 60-40 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: Cambridge Technology, Inc.
Description: The Galvo motor selection begins with the component that is closest to your application, the mirror. Considerations such as wavelength, power, beam diameter and spot size will dictate the best mirror for your application. Low inertia is essential for beam-steering mirrors to
- Wavelength Range: 248 to 10,600 nm
- Mirror Materials: BK7 Glass, Fused Silica
- Mirror Coatings: Bare Aluminum, Bare Gold, Dielectric, Silver, Uncoated
- Mirror Types: Flat Mirror
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Supplier: Changchun Sunday Optics Co., Ltd.
Description: Optical Mirrors are used for beam turning, interferometry, imaging, or illumination.Using polished glass or metal as the substrate, the light beam hits the surface to form mirror reflection.In order to obtain as much reflected light as possible, the substrate is often coated
- Diameter/Width: 2 to 800 mm
- Surface Flatness: λ/10
- Surface Quality: 10-5 Scratch / Dig
- Mirror Materials: BK7 Glass
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Supplier: Spectral Optics
Description: Spectral Optics provide high-quality dielectric coated laser mirrors for use with high power/energy and or ultra-fast lasers from UV to IR spectral ranges. Most dielectric coated laser mirrors that Spectral Optics provide guarantee the state of art damage threshold and
- Wavelength Range: 248 to 1,550 nm
- Diameter/Width: 12.699993142003704 to 50.799972568014816 mm
- Surface Flatness: λ/10
- Features: 0º Incidence, 45º Incidence
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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: Shanghai Optics is a custom optics manufacturer with over 55 years of optics manufacturing experience. We supply high precision Ultra-Broadband Metallic Mirrors according to customers’ specifications. These mirrors provide a high reflectance over a very broad spectral bandwidth. They
- Mirror Materials: BK7 Glass
- Mirror Coatings: Bare Aluminum, Dielectric, Silver
- Mirror Types: Flat Mirror, Laser Mirror
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Supplier: EKSMA OPTICS
Description: Laser Line Mirrors are dielectric reflectors with optimised performance at stated laser wavelengths. Dual band laser mirrors are offered for applications where reflection of two laser lines is needed. Our laser mirrors are made from BK7 or quartz and coated with
- Wavelength Range: 266 to 1,064 nm
- Diameter/Width: 12.700000000000001 to 76.2 mm
- Thickness: 3 to 12.700000000000001 mm
- Surface Flatness: λ/10
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Supplier: EKSMA OPTICS
Description: Laser line mirrors are dielectric reflectors with an optimized performance at stated laser wavelengths. In this section we present laser mirrors made from BK7 glass and coated with a multilayer dielectric or IBS coating. High polishing quality of the mirror
- Wavelength Range: 327 to 1,570 nm
- Diameter/Width: 12.700000000000001 to 76.2 mm
- Thickness: 3 to 12.700000000000001 mm
- Surface Flatness: λ/10
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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
- 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: Daheng New Epoch Technology, Inc.
Description: These are precision flat mirrors with a metallic gold coating. The gold layer is protected both underneath and above with dielectric layers which ensures good adhesion to the substrate and allows cleaning by normal laboratory methods. These mirrors have very high reflectivity
- Diameter/Width: 20.000000000000004 to 40.00000000000001 mm
- Thickness: 4 mm
- Surface Flatness: λ/4
- Surface Quality: 60-40 Scratch / Dig
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Supplier: Rocky Mountain Instrument/RMI Laser
Description: Mirrors are used in a wide range of beam steering, focusing and collimating applications. RMAX Mirrors utilize multi-layer, dielectric thin films. Laser-Line RMAX Mirrors are designed for high reflectance at a single laser wavelength. High power coating designs are
- Surface Flatness: λ/20, λ/4
- Features: 0º Incidence, 45º Incidence, Other, Other Mirror Material
- Surface Quality: 10-5 Scratch / Dig, 20-10 Scratch / Dig, 40-20 Scratch / Dig
- Mirror Materials: BK7 Glass, Fused Silica, UV Grade Fused Silica
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Supplier: Shanghai Optics
Description: A Right Angle Mirror, also known as a turning mirror, is a mirror prism which reflects incident light at 90°. The hypotenuse of these triangular prisms are coated with an enhanced aluminum, silver, or protected gold coating. These mirrors play a key role in compact
- Mirror Materials: BK7 Glass, Optical Crown Glass
- Mirror Coatings: Enhanced Aluminum, Protected Gold, Silver
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Featured Products Top
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What is the difference between HR and AR coating? Increase your glass optic's performance with an anti-reflective (AR) coating or a high-reflective (HR) coating. Specifically designed HR coatings reflect most or all of a wavelength band while adding AR coatings will increase the transmission of a specific wavelength or wavelength band. (read more)
Browse Optical Mirrors Datasheets for Changchun Yutai Optics Co., Ltd. -
, lightweight composites Mirror Geometries Flat, spherical, parabolic, freeform High-Performance Coatings Protected aluminum, silver, gold, dielectric (read more)
Browse Optical Mirrors Datasheets for Avantier Inc. -
Features: High Reflectivity, Narrow Band and Broadband Wavelength are Available, Easy to Mount/Align and Operation. High-reflection (HR) Dielectric Mirrors refer to coating layers of dielectric films on (read more)
Browse Optical Lenses Datasheets for Changchun Yutai Optics Co., Ltd. -
Avantier manufactures custom and stock OAP mirrors in aluminum, nickel-plated aluminum, fused silica, Zerodur, ULE, and silicon carbide, supporting applications from compact infrared instruments to large-aperture spaceborne optical systems. Key Capabilities Why Choose (read more)
Browse Optical Mirrors Datasheets for Avantier Inc. -
Properties: All spherical mirrors offered by Avantier have a focal length equal to half their radius of curvature. This property is fundamental to their optical behavior (read more)
Browse Optical Mirrors Datasheets for Avantier Inc.
Conduct Research Top
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Application Notes: Using Beam Splitters for Teleprompters
Abrisa Technologies provides non-distortion, high definition compatible optical grade beam splitter mirrors for teleprompter applications. Each teleprompter mirror is coated with an all dielectric anti-reflective (AR) coating on one side and a dielectric beam splitter mirror coating on the other
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Application Note - Using Beam Splitters for Teleprompters
an optimized all dielectric 65% transmission and 35% reflection front surface mirror coating and a low loss rear surface anti-reflection (AR) coating preventing ghosting.
More Information Top
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Localized States in Physics: Solitons and Patterns
liquid cristals ITO electrodes photoconductor dielectric mirror glass plate .
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Semiconductor microlasers with intracavity microfluidics for biomedical applications
Living or fixed cells are placed on a microfabricated AlGaAs/GaAs surface-emitting semiconductor wafer and covered with a glass dielectric mirror to form a laser resonator (see Fig. la).
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Surface-emitting semiconductor laser for intracavity spectroscopy and microscopy
The object to be studied is placed on the wafer and covered with• a glass dielectric mirror which acts as the output coupler.
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Surface-emitting semiconductor laser for intracavity spectroscopy and microscopy
The object to be studied is placed on the wafer and covered with a glass dielectric mirror which acts as the output coupler.
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Semiconductor microlasers with intracavity microfluidics for biomedical analyses
The device illustrated in Fig. lb shows a microfabricated flow structure formed between two surfaces, a vertical cavity surface-emitting laser and a glass dielectric mirror .
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Fundamental Mode-Locking of a Composite-Cavity Electro-optic Microchip Laser for Microwave Photonics
…waveguide aperture, POST: circular cylindrical metallic post, LN: microchip laser magnesium oxide-doped lithium niobate phase modulator section, PED: metallic pedestal, V: microchip laser neodymium-doped yttrium orthovanadate gain section, AG: air gap, WG: microwave waveguide interior, G: glass dielectric mirror .
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High Efficiency Electrically-Addressable Phase-Only Spatial Light Modulator
Dielectric Mirror Glass Substrate .
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Surface-emitting semiconductor laser spectroscopy and microscopy for characterizing normal and sickled red blood cells
The cells are placed on an AIGaAS/GaAS surface-emitting semiconductor wafer and covered with a glass dielectric mirror to form a laser resonator.
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Surface-emitting superconductor laser spectroscopy for characterizing normal and sickled red blood cells
The cells are placed on an AlGaAdGaAs surfaceemitting semiconductor wafer and covered with a glass dielectric mirror to form a laser resonator.
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Semiconductor microlasers with intracavity microfluidics for biomedical applications
Living or fixed cells are placed on a microfabricated AlGaAdGaAs surface-emitting semiconductorwafer and covered with a glass dielectric mirror to form a laser resonator (see Fig. 1a) In this arrangement, thecellsserve as optical waveguides (or lens elements) to confine (or…
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