Newport MKS Concave Super Mirror, High Finesse, Ultra-Low Loss, 25.4 mm, 1457-1659 nm 10CV00SR.70F

Description
The 10CV00SR.70F is a 25.4 mm diameter, 500 mm effective focal length (EFL), 6.35 mm thickness concave High Finesse SuperMirror, optimized for 1457-1659 nm. SuperMirrors™ take advantage of our advanced super polishing and ion-beam coating technology to provide the highest reflectivity and lowest losses of any commercially available mirrors over the spectral range of 583-1659 nm. When used in etalons or optical cavities, these mirrors typically provide finesse levels in excess of 30,000; approximately 30 times better than mirrors manufactured by standard techniques. Absolute R>99.97% Mirrors In Stock Many standard mirrors are offered with high average reflectivity, but these Supermirrors have exceptional absolute reflectivity specifications of greater than 99.97%. We stock theses mirrors making them the highest absolute reflectivity available in a standard catalog optic. These mirrors are ideal when you need every photon. The high finesse coatings have finesse greater than 10,000 and efficiency greater than 10% when used in carefully constructed cavities. Superpolished Substrates This mirror is superpolised to <2 Å RMS microroughness for ultra-low scatterring. 10-5 scratch-dig is achieved in the center 50% of the clear aperture. This central area is the sweet spot where Fabry pert cavity designs can achieve extremely high finesse. Surface profile of typical superpolished substrate. Advanced Ion Beam Sputtered (ISB) Coatings Newport's proprietary IBS coating technique enables the SuperMirrors to provide the highest absolute reflectivity available as standard mirrors. IBS is a higher energy coating process in which atoms of the coating material can be packed more tightly. The results are very high reflectivity, resistance to environmental changes, and unmatched performance for intra-cavity mirrors which require high finesse.
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Description
The 10CV00SR.70F is a 25.4 mm diameter, 500 mm effective focal length (EFL), 6.35 mm thickness concave High Finesse SuperMirror, optimized for 1457-1659 nm. SuperMirrors™ take advantage of our advanced super polishing and ion-beam coating technology to provide the highest reflectivity and lowest losses of any commercially available mirrors over the spectral range of 583-1659 nm. When used in etalons or optical cavities, these mirrors typically provide finesse levels in excess of 30,000; approximately 30 times better than mirrors manufactured by standard techniques. Absolute R>99.97% Mirrors In Stock Many standard mirrors are offered with high average reflectivity, but these Supermirrors have exceptional absolute reflectivity specifications of greater than 99.97%. We stock theses mirrors making them the highest absolute reflectivity available in a standard catalog optic. These mirrors are ideal when you need every photon. The high finesse coatings have finesse greater than 10,000 and efficiency greater than 10% when used in carefully constructed cavities. Superpolished Substrates This mirror is superpolised to <2 Å RMS microroughness for ultra-low scatterring. 10-5 scratch-dig is achieved in the center 50% of the clear aperture. This central area is the sweet spot where Fabry pert cavity designs can achieve extremely high finesse. Surface profile of typical superpolished substrate. Advanced Ion Beam Sputtered (ISB) Coatings Newport's proprietary IBS coating technique enables the SuperMirrors to provide the highest absolute reflectivity available as standard mirrors. IBS is a higher energy coating process in which atoms of the coating material can be packed more tightly. The results are very high reflectivity, resistance to environmental changes, and unmatched performance for intra-cavity mirrors which require high finesse.
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Concave Super Mirror, High Finesse, Ultra-Low Loss, 25.4 mm, 1457-1659 nm - 10CV00SR.70F - Newport MKS
Irvine, CA, United States
Concave Super Mirror, High Finesse, Ultra-Low Loss, 25.4 mm, 1457-1659 nm
10CV00SR.70F
Concave Super Mirror, High Finesse, Ultra-Low Loss, 25.4 mm, 1457-1659 nm 10CV00SR.70F
The 10CV00SR.70F is a 25.4 mm diameter, 500 mm effective focal length (EFL), 6.35 mm thickness concave High Finesse SuperMirror, optimized for 1457-1659 nm. SuperMirrors™ take advantage of our advanced super polishing and ion-beam coating technology to provide the highest reflectivity and lowest losses of any commercially available mirrors over the spectral range of 583-1659 nm. When used in etalons or optical cavities, these mirrors typically provide finesse levels in excess of 30,000; approximately 30 times better than mirrors manufactured by standard techniques. Absolute R>99.97% Mirrors In Stock Many standard mirrors are offered with high average reflectivity, but these Supermirrors have exceptional absolute reflectivity specifications of greater than 99.97%. We stock theses mirrors making them the highest absolute reflectivity available in a standard catalog optic. These mirrors are ideal when you need every photon. The high finesse coatings have finesse greater than 10,000 and efficiency greater than 10% when used in carefully constructed cavities. Superpolished Substrates This mirror is superpolised to <2 Å RMS microroughness for ultra-low scatterring. 10-5 scratch-dig is achieved in the center 50% of the clear aperture. This central area is the sweet spot where Fabry pert cavity designs can achieve extremely high finesse. Surface profile of typical superpolished substrate. Advanced Ion Beam Sputtered (ISB) Coatings Newport's proprietary IBS coating technique enables the SuperMirrors to provide the highest absolute reflectivity available as standard mirrors. IBS is a higher energy coating process in which atoms of the coating material can be packed more tightly. The results are very high reflectivity, resistance to environmental changes, and unmatched performance for intra-cavity mirrors which require high finesse.

The 10CV00SR.70F is a 25.4 mm diameter, 500 mm effective focal length (EFL), 6.35 mm thickness concave High Finesse SuperMirror, optimized for 1457-1659 nm. SuperMirrors™ take advantage of our advanced super polishing and ion-beam coating technology to provide the highest reflectivity and lowest losses of any commercially available mirrors over the spectral range of 583-1659 nm. When used in etalons or optical cavities, these mirrors typically provide finesse levels in excess of 30,000; approximately 30 times better than mirrors manufactured by standard techniques.

Absolute R>99.97% Mirrors In Stock

Many standard mirrors are offered with high average reflectivity, but these Supermirrors have exceptional absolute reflectivity specifications of greater than 99.97%. We stock theses mirrors making them the highest absolute reflectivity available in a standard catalog optic. These mirrors are ideal when you need every photon. The high finesse coatings have finesse greater than 10,000 and efficiency greater than 10% when used in carefully constructed cavities.


Superpolished Substrates

This mirror is superpolised to <2 Å RMS microroughness for ultra-low scatterring. 10-5 scratch-dig is achieved in the center 50% of the clear aperture. This central area is the sweet spot where Fabry pert cavity designs can achieve extremely high finesse.


Surface profile of typical superpolished substrate.

Advanced Ion Beam Sputtered (ISB) Coatings


Newport's proprietary IBS coating technique enables the SuperMirrors to provide the highest absolute reflectivity available as standard mirrors. IBS is a higher energy coating process in which atoms of the coating material can be packed more tightly. The results are very high reflectivity, resistance to environmental changes, and unmatched performance for intra-cavity mirrors which require high finesse.

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Technical Specifications

  Newport MKS
Product Category Optical Mirrors
Product Number 10CV00SR.70F
Product Name Concave Super Mirror, High Finesse, Ultra-Low Loss, 25.4 mm, 1457-1659 nm
Focal Length 500 mm (19.69 inch)
Wavelength Range 1457 to 1659 nm (14570 to 16590 Å)
Diameter/Width 25.4 mm (1 inch)
Thickness 6.35 mm (0.2500 inch)
Mirror Shape Concave
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