The Basic Principles Of GTR-KTP Crystal
The Basic Principles Of GTR-KTP Crystal
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The crystals are used in professional medical lasers for techniques like laser surgery, tattoo elimination, and pores and skin resurfacing, in which secure and trustworthy laser general performance is important.
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Potassium Titanyl Phosphate crystals (KTP) is one of the most extensively applied nonlinear optical crystals in several optical devices. GAMDAN Optics gives GTR (grey tracking resistant) KTP crystals which can be hydrothermally grown. We also provide flux developed KTP and will operate with our customers to provide one of the most appropriate Resolution for your personal application.
KTP is a superb nonlinear crystal, but its grey tracking phenomena limitations its use in large repetition amount and higher electricity laser systems. CASTECH's GTR-KTP crystal has bigger gray tracking resistance when compared to the typical flux grown KTP crystal.
By means of Image-thermal Widespread-path Interferometer, the incidence of grey monitoring can be measured by an increase of bulk absorption through a potent CW 532 nm environmentally friendly laser in numerous minutes.
Comparison concerning the shared and coupled resonators to the intracavity optical parametric oscillators pumped by passively Q-switched Nd:GdVO4 lasers is experimentally manufactured. The shared and coupled…
CRYSTECH has over twenty years of KTP advancement and processing working experience. The crystal expansion process continues to be optimized to provide substantial-high-quality and productive crystals, along with the coating method is specially built to offer a comparatively increased damage threshold.
Flux developed KTP crystals supply a much better selling price benefit. Additionally it is effortlessly fabricated in much larger dimensions.
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We existing With this report an productive KTP-primarily based intracavity optical parametric oscillator pushed by a diode-pumped Nd:GdVO4/Cr:YAG passively read more Q-switched laser. For the first time, a novel folded…
GTR-KTP crystals, created with impressive manufacturing processes, show noticeably greater resistance to grey monitoring and lower absorption inside the UV and visual locations, generating them suitable for an array of apps which include frequency doubling, parametric oscillation, and laser amplification.
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We report an intracavity optical parametric oscillator at 1.fifty seven μm depending on non-critically nonlinear crystal KTP pushed by an close-pumped acousto-optically Q-switched Nd:LuVO4 crystal. The output…
With their wide spectral range and very low IR absorption, GTR-KTP crystals are well-suited to spectroscopic devices and Innovative imaging systems.