The tunable Ti:Sapphire lasers manufactured by SOLAR LS are the devices integrating more than 15-year experience of SOLAR LS’s engineers and researchers in the field of solid-state tunable lasers.
Our Ti:Sapphire lasers offer the user a unique combination of reliable and friendly design with high-quality and high-power output.
Compatibility with pump lasers
SOLAR LS advanced design solves a typical problem related to compatibility of Ti:Sapphire lasers to a pump source.
Either single-mode or multimode Nd:YAG lasers with SHG with the output energy from several mJ till 1J can be used as a pump laser.
Easy-to-use and friendly in operation
The lasers installation does not take much time. Due to the rigid design, the laser retains the factory alignment even after ling transportation. All you need is just to steer properly the pumping beam into the laser and be sure that pump energy is within the specified range.
Spectral optimized output
We have developed for our Ti:Sapphire lasers a specific cavity with Q-factor matched to spectral gain curve of the active medium. It allows to obtain the utmost wide tuning range and the maximum output for each wavelength.
Excellent beam quality
Innovative cavity design provides high efficient output with a smooth Gaussian beam profile and ~1mrad divergence in the whole spectral range. High quality of tunable radiation makes our Ti:Sapphire lasers an optimal choice for experiments in non-liner optics and other fields.
High reliability
Conventional Ti:Sapphire lasers typically operate at high pump intensities close to the damage threshold of their optical components. This results in low reliability of such systems. The Ti:Sapphire lasers developed by SOLAR LS avoid this problem by providing specified output at pump intensities that are much lower than damage threshold for optical components. This leads to high reliability and longer lifetime for key optics utilized in the laser.
Harmonic Generators options
SOLAR LS Ti:Sapphire lasers have built-in high-efficient SHG. A compensator in the SHG allows to avoid spatial shift of the second harmonic beam while changing the wavelength. The fundamental and second harmonic are separated with high spectral purity by means of broadband dichronic mirrors. The lasers have possibilities for both separate and simultaneous fundamental and second harmonic output.
THG and FHG units offered by SOLAR LS together with Ti:Sapphire lasers provide high-efficient tunable output within the range from 209nm to 330nm.
PC Control option
Upon your request all the Ti:Sapphire lasers may be computer controlled.