Ti:Sapphire Crystal by HG Optronics
Description
Ti:Sapphire crystal is the most widely used tunable solid-state laser material combining the supreme physical and optical properties with the extremely broad lasing range. Its lasing bandwidth can support pulses < 10fs making it the crystal of choice for femtosecond mode-locked oscillators and amplifiers. The absorption band of Ti:Sapphire centers at ~ 490 nm so it may be conveniently pumped by various laser sources such as argon ion lasers or frequency doubled Nd:YAG, Nd:YLF, Nd:YVO4 lasers at ~ 530nm.
Ti:Sapphire Crystal by HG Optronics
Specifications |
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Type Of Crystal: | Ti:Sapphire |
Crystal Diameter: | N/A mm |
Crystal Length: | N/A mm |
AR Coating: | One side, Both sides, Uncoated |
Orientation:: | Optical axis C normal to rod axis |
Ti2O3 Concentration:: | 0.06 - 0.5wt % |
Figure Of Merit (FOM):: | 150~250 Upon customers request |
End Configurations:: | Flat/Flat or Brewster/Brewster ends |
Surface Finishing:: | 10/5 scratch/dig to MIL-O-13830A |
Wavefront Distortion:: | l /4 per inch |
Features
Wide wavelength tunability
Broad absorption pump band
Preeminent output efficiency
Short upper-state lifetime(3.2 mm)
Narrow locked mode width
High damage thresholdExcellent thermal conductivity
Applications
Material Processing
800nm laser
For pricing, technical or any other questions please contact the supplier
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Ships from:
China
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Sold by:
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On FindLight:
since 2019
Frequently Asked Questions
Ti:Sapphire crystal has wide wavelength tunability, broad absorption pump band, preeminent output efficiency, short upper-state lifetime (3.2 mm), narrow locked mode width, high damage threshold, and excellent thermal conductivity.
Ti:Sapphire crystal can be conveniently pumped by various laser sources such as argon ion lasers or frequency doubled Nd:YAG, Nd:YLF, Nd:YVO4 lasers at ~ 530nm.
The absorption band of Ti:Sapphire crystal centers at ~ 490 nm.
The lasing bandwidth of Ti:Sapphire crystal can support pulses < 10fs.
Ti:Sapphire crystal is widely used as a tunable solid-state laser material for femtosecond mode-locked oscillators and amplifiers.