DETAILED NOTES ON GTR-KTP CRYSTAL

Detailed Notes on GTR-KTP Crystal

Detailed Notes on GTR-KTP Crystal

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GTR-KTP crystals are widely used in applications that need large-effectiveness nonlinear optical elements with improved durability and resistance to grey tracking. Some noteworthy programs consist of:

Comparison among shared and coupled resonators for passively Q-switched Nd:GdVO4 intracavity optical parametric oscillators

Potassium Titanyl Phosphate crystals (KTP) is one of the most extensively used nonlinear optical crystals in lots of optical techniques. GAMDAN Optics features GTR (grey monitoring resistant) KTP crystals which might be hydrothermally grown. We also offer flux grown KTP and will perform with our clientele to supply by far the most ideal solution for your application.

A compact successful eye-Protected intracavity optical parametric oscillator pumped by a passively Q-switched Nd:YAG laser within a shared cavity configuration with successful conversion efficiency as significant as 51% is presented.

                                                                                                 

By Photograph-thermal Popular-path Interferometer, the incidence of grey tracking is usually calculated by a rise of bulk absorption through a potent CW 532 nm eco-friendly laser within just numerous minutes.

CASTECH's GRT-KTP, as a wonderful NLO crystal, has lower absorption and better damage threshold than the conventional KTP, which we can conclude it possesses a greater grey monitor resistance.

This phenomenon is correlated with “grey tracking result�? The next graphs show the absorption stage adjustments as time passes at 1064 nm for CASTECH's GTR-KTP and the conventional KTP individually          

Flux developed KTP crystals present a greater selling price gain. It's also effortlessly fabricated website in larger dimensions. 

Additionally, the shut autoclave development process permits zero to small chemical impurities as well as continuous advancement charge lends an outstanding homogeneity or uniform produce all over the bulk crystal. 

The crystals are commonly used to double the frequency of Nd:YAG and Nd:YVO�?lasers, generating obvious inexperienced laser output (532 nm) from the basic 1064 nm wavelength.

                                                             

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We report an intracavity optical parametric oscillator at one.57 μm based upon non-critically nonlinear crystal KTP driven by an conclude-pumped acousto-optically Q-switched Nd:LuVO4 crystal. The output…

Productive sub-nanosecond intracavity optical parametric oscillator pumped using a passively Q-switched Nd:GdVO4 laser

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