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Laser-Line Mirrors

Referencia ATF-MI1000-FY

The Laser-Line Mirrors of Advanced Thin Films provide superior film quality and uniformity results in environmentally stable optics with laser damage thresholds exceeding 40 J/cm2 at 1064 nm






Alexandre Besson
Business Unit Director
+33 5 57 10 92 84
a.besson@laser2000.fr
Solicitud de producto: Laser-Line MirrorsX



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DESCRIPCIÓN DEL PRODUCTO
Advanced Thin Films offers superior quality laser optics at a great value.  We use only ion-beam-sputtered IBS coatings because IBS coatings are significantly more dense, durable, and rugged than conventional e-beam or ion-assisted evaporated coatings. Compared to other coatings, IBS coatings also offer lower scatter and absorption losses and fewer pin-hole defects in the coated surface.
This superior film quality and uniformity results in environmentally stable optics with laser damage thresholds exceeding 40 J/cm, wherein the high-energy laser mirrors more than 70 J/cm2 at 1064 nm and 20 ns.

 

Mirror coatings are available on flat or curved substrates and, because we use all-dielectric designs, they can handle the high laser powers of both CW and pulsed systems.

 

 

High-Energy Laser-Line Mirrors for 0° incidence

 

Model Number

MI 1000-FY

MI 1000-DY

MI 1000-TY

MI1000-QY

Type

High-Energy Nd: YAG Mirrors

High-Energy Doubled Nd: YAG Mirrors 

 High-Energy Tripled Nd: YAG Mirrors

High-Energy Quadrupled Nd: YAG Mirrors 

Wavelength (nm)

 1064 

 532

355 

266 

Revlectivity

 99.9% at 0°

 99.9% at 0° 

 99.9% at 0° 

 99.9% at 0° 

Clear Aperture (%)

85 

85 

85 

85 

Surface Figure

?/10

?/10

 ?/10

?/10 

Surface Quality

10/5

 10/5

 10/5

10/5 

Damage Threshold

40J/cm2 @ 1064nm 20ns, 20Hz

8J/cm2 @ 532nm 10ns, 20Hz

3J/cm2 @ 355nm 10ns, 20Hz

2J/cm2 @ 266nm 7ns, 20Hz

Durability

MIL-PRF-13830B

MIL-PRF-13830B

MIL-PRF-13830B

MIL-PRF-13830B

Diameter

1 " +0/-0.010"

1 " +0/-0.010"

1 " +0/-0.010"

1 " +0/-0.010"

Thickness

1/4" ±0.010"

1/4" ±0.010"

1/4" ±0.010"

1/4" ±0.010"

Substrate Material

Fused Silica

Fused Silica

Fused Silica

Fused Silica

 


High-Energy Laser-Line Mirrors for 45° incidence


Model Number

MI 1045-FY

MI 1045-DY

MI 1045-TY

MI1045-QY

Type

High-Energy Nd: YAG Mirrors

High-Energy Doubled Nd: YAG Mirrors 

 High-Energy Tripled Nd: YAG Mirrors

High-Energy Quadrupled Nd: YAG Mirrors 

Wavelength (nm)

 1064 

 532

355 

266 

Reflectivity

 99.9% at 45°
(both s & p)

 99.9% at 45°
(both s & p) 

 99.9% at 45°
(both s & p) 

 99.9% at 45°
(both s & p) 

Clear Aperture (%)

85 

85 

85 

85 

Surface Figure

?/10

?/10

 ?/10

?/10 

Surface Quality

10/5

 10/5

 10/5

10/5 

Damage Threshold

40J/cm2 @ 1064nm 20ns, 20Hz

8J/cm2 @ 532nm 10ns, 20Hz

3J/cm2 @ 355nm 10ns, 20Hz

2J/cm2 @ 266nm 7ns, 20Hz

Durability

MIL-PRF-13830B

MIL-PRF-13830B

MIL-PRF-13830B

MIL-PRF-13830B

Diameter

1 " +0/-0.010"

1 " +0/-0.010"

1 " +0/-0.010"

1 " +0/-0.010"

Thickness

1/4" ±0.010"

1/4" ±0.010"

1/4" ±0.010"

1/4" ±0.010"

Substrate Material

 Fused Silica

Fused Silica

Fused Silica

Fused Silica

 

 

Why Dielectric instead of Metal?

 
Metal mirrors have long been the standard for general-purpose high reflectors, but they have several significant limitations which make them a poor fit for many of today’s laser applications. Although inexpensive upfront, drawbacks of metal mirrors include susceptibility to both laser damage and mechanical abrasions, tarnishing or surface degradation, and poor adhesion. In contrast, the increased reflectivity and durability of all-dielectric coatings can result in improved performance and cost savings over the lifetime of an optic or optical system. 
 
The broadband dielectric IBS coatings cover wide wavelength ranges from the UV to NIR with > 99% reflectivity, independent of both angle and polarization. In addition, they are easy to clean, scratch resistant and insensitive to environmental changes. With high damage thresholds and low scatter and absorption coefficients, they are ideal for frequency doubled and tripled Nd:YAG lasers, fiber lasers and broadband or tunable laser applications.

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