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Nd:YAG Crystal

Growing the Czochralski Technique

High Gain, Low Threshold, High Efficiency

Low Loss at 1.06 mm, High Optical Quality

 Good Mechanical and Thermal Properties

Boned YAG Crystal

>30% higher average strength in flexure tests than competitor bonds

Bond failures do not originate at the bond interface.

Increased reliability indicated by higher Weibull modulus values.

 All SYNOPTICS bonds pass boiling water thermal shock testing.

Ceramic YAG Crystals

5 times greater than single crystals

1.5 times greater than single crystals

Up to 4% Nd doping with no gradient

 Unique composite designs

Nd:YVO4 Crystal

Low lasing threshold and high slope efficiency

Large stimulated emission cross-section at lasing wavelength

High absorption over a wide range of pumping wavelength

 Large birefringence emitting polarized light

Ti:Sapphire Crystal

High doping level

High gain

High damage threshold

Nd:KGW Crystal

Low-threshold, highly effective laser material

Low pumping energies (0.5 to 1.0 J)

Nd:YLF Crystal

Low Thermal Lensing

large fluorescence, linewidth, Birfringent

Capable of High Power or Modelocked Operation

Cr:YAG Crystal

Ideal material for passive Q-switching of Nd:YAG

Wavelength range of 0.8 to 1.2 ¥ìm

High damage threshold of 500-1000 MW/cm2

Er:YAG Crystal

Wide pump band of 600 - 800 nm

High optical quality

Operates in a long-wavelength, high water peak region

 Ideal for hard tissue removal

Nd:GdVO4 Crystal

Low lasing threshold and high slope efficiency

Large stimulated emission cross-section at lasing wavelength

High absorption over a wide pumping wavelength bandwidth

 Optically uniaxial and large birefringence emitting polarized laser

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