The Definitive Guide to GTR-KTP Crystal

Potassium Titanyl Phosphate (KTiOPO4 or KTP) is an excellent nonlinear optical material appropriate for use in lots of optical methods. It has substantial nonlinear coefficient and steady Bodily property.

GTR-KTP crystal has gray monitor resistance adequately better than normal flux-grown KTP. It has broad angular bandwidth and compact stroll-off angle and wide temperature and spectral bandwidth. GTR-KTP crystals can be greatly used in health-related, military services and meteorology fields.

GAMDAN Optics hydrothermally developed KTP crystals have a drastically larger gray tracking resistance compared to flux developed KTP crystals.

Compact productive eye-Protected intracavity optical parametric oscillator having a shared cavity configuration.

Through Image-thermal Frequent-path Interferometer, the incidence of grey monitoring could be calculated by a rise of bulk absorption through a sturdy CW 532 nm eco-friendly laser inside quite a few minutes.

Comparison involving the shared and coupled resonators for the intracavity optical parametric oscillators pumped by passively Q-switched Nd:GdVO4 lasers is experimentally made. The shared and coupled…

CASTECH's GRT-KTP, as an outstanding NLO crystal, has decrease absorption and better problems threshold than the traditional KTP, which we will conclude it possesses the next gray observe resistance.

This phenomenon is correlated with “grey monitoring impact�? The following graphs display the absorption level adjustments eventually at 1064 nm for CASTECH's GTR-KTP and the standard KTP independently          

This sort of crystals Have a very lessen Original IR absorption and they are less afflicted by eco-friendly light than normal KTP, Therefore stay away from the problems of harmonic electrical power instabilities, efficiency drops, crystal blackening, and beam distortion.

Superior damage threshold as opposed to standard KTP crystals, making certain reliability in demanding purposes.

The crystals are commonly accustomed to double the frequency of Nd:YAG and Nd:YVO�?lasers, creating noticeable eco-friendly 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…

Intracavity optical parametric oscillator at 1572-nm wavelength here pumped by passively Q-switched diode-pumped Nd:YAG laser

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