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12.7mm Dia. 5°, 1030nm Highly-Dispersive Broadband Ultrafast Mirror

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Stock #12-327 3-4 days
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£371.45
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£371.45
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£327.25
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Type:
Laser Mirror
Typical Applications:
Yb:doped 1st Harmonic
Wedge (arcmin):
10 ±5
Clear Aperture (%):
80
Back Surface:
Commercial Polish
Reflection at DWL (%):
99.9 (typical, p-polarization)
Coating Specification:
Ravg >99.8%, GDD = -200 fs2 @ 950 - 1120nm (p-polarization)
Rabs >99.9% @ 1030nm (typical, p-polarization)
GDD Specification:
-200fs2 @ 950 -1120nm
Wavelength Range (nm):
950 - 1120
Irregularity (P-V) @ 632.8nm:
λ/10
Coating Type:
Dielectric
Coating:
Ultrafast (950-1120nm)
Design Wavelength DWL (nm):
1030
Diameter (mm):
12.70 +0.0/-0.1
Thickness (mm):
6.35 ±0.2
Angle of Incidence (°):
5
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Fused Silica (Corning 7980)
Damage Threshold, Reference: Damage threshold for optical components varies by substrate material and coating. Click here to learn more about this specification.
>0.1 J/cm2 for 190 fs @ 1 kHz rep rate @ 1030nm

Regulatory Compliance

RoHS 2015:
Certificate of Conformance:
Reach 235:

Product Family Description

  • Negative GDD of -200 fs2 at 5° AOI
  • >99.8% Reflection (p-polarization) between 950 - 1120nm
  • Designed for Pulse Compression of Yb:doped Fiber Lasers
  • Broadband Ultrafast Chirped Coating

UltraFast Innovations (UFI) 1030nm Highly-Dispersive Broadband Ultrafast Mirrors are used for pulse compression and dispersion compensation of near infrared (NIR) ultrafast pulses, such as from Yb:doped fiber lasers. These mirrors provide a minimum reflectance of 99.8% within their wavelength range and a typical reflectance of >99.9% at their design wavelength of 1030nm. Their multilayer chirped ultrafast coating is optimized to provide dispersive optical interference as well as a negative group delay dispersion (GDD) of -200fs2 across their broad wavelength range. UFI 1030nm Highly-Dispersive Broadband Ultrafast Mirrors are designed to provide a high degree of control over beam stability, as well as control of third and higher-order dispersions. The 5° angle of incidence is ideal for maximizing the number of reflections between a pair of ultrafast mirrors in tight spaces, such as intra-cavity applications.

Standard imperial sizes of ½” or 1” (12.7mm or 25.4mm) are available; please contact us if your laser system requires a custom size, wavelength, or ultrashort pulses and we would be happy to find the right solution for your application.