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Femtoline Nonlinear & Laser Crystals

  Femtoline Nonlinear & Laser Crystals

 

 

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 Femtoline Nonlinear & Laser Crystals

Wide selection of thin nonlinear BBO crystals for second and third harmonic generation of ti:sapphire laser wavelength, BBO and LBO crystals for second harmonic generation of YB:KGW/KYW frequency conversion, Yb:KGW/KYW laser crystals and third harmonic generation of ti:sapphire laser kits.

 

 


 

Thin BBO Crystals for SHG of Ti:Sapphire Laser Wavelength

The minimum aperture of free standing BBO is 5x5 mm, maximum - 22x22 mm. The tolerance is ±50 µm for crystals of thickness down to 300 µm and ±20 µm for crystals of thickness down to 100 µm.

 

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Thin BBO Crystals for THG of Ti:Sapphire Laser Wavelength

Crystals down to 100 µm thickness can be manufactured as free standing crystals (not attached to any kind of support). However, ring mounts are highly recommended for safe handling of these thin crystals.

 

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Femtokits for Third Harmonic Generation of Ti:Sapphire Laser

Kits consist of set of components required for efficient third harmonic generation of femtosecond Ti:Sapphire laser.

 

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Thin AgGaS2 Crystals for DFG → 2.5-1.3µm

BBAR coating, a multilayer dielectric antireflection coating, is designed to minimise dispersion of ultrashort pulses and also features high damage threshold.

 

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Yb:KGW and Yb:KYW Crystals Laser Lines and Harmonics

Yb:KGW and Yb:KYW crystals have broad emission bandwidths and are used as lasing materials to generate ultrashort (~ 100-200 fs) high power pulses. Direct pump of Yb:KGW/KYW crystals with laser diodes operating at 981 nm supports compact laser systems.

 

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BBO Crystals for SHG of Yb:KGW/KYW Frequency Conversion

EKSMA OPTICS recommends these BBO crystals for Type 1 SHG at 1030 nm depending on fundamental wavelength pulse duration, assuming it's spectrum limited Gausian pulse.

 

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LBO Crystals for SHG of Yb:KGW/KYW Frequency Conversion

EKSMA OPTICS recommends these LBO crystals for Type 1 SHG at 1030 nm depending on fundamental wavelength pulse duration, assuming it's spectrum limited Gausian pulse.

 

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