GTR-KTP CRYSTAL SECRETS

GTR-KTP Crystal Secrets

GTR-KTP Crystal Secrets

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The crystals are used in professional medical lasers for techniques like laser surgery, tattoo elimination, and pores and skin resurfacing, wherever secure and dependable laser performance is vital.

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

GAMDAN Optics hydrothermally developed KTP crystals Possess a considerably better grey monitoring resistance in comparison to flux grown KTP crystals.

Determined by The grey monitoring resistance (GTR) KTP crystals, the efficiency of the higher productive and compact intracavity frequency doubling 532 nm laser was investigated. The grey monitoring exam…

By Picture-thermal Typical-path Interferometer, the occurrence of grey monitoring can be calculated by a boost of bulk absorption through a sturdy CW 532 nm inexperienced laser in just quite a few minutes.

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Extremely economical intracavity frequency doubling 532-nm laser based upon The grey tracking resistance KTP crystal

Its most popular application is being a frequency doubler employing the 1064nm output of a Nd:YAG laser and also to make 532nm laser. KTP’s Attributes also enable it to be superior for electro-optic modulation, optical parametric era.

This sort of crystals Possess a decreased First IR absorption and therefore are a lot less influenced by inexperienced light than typical KTP, Hence prevent the problems of harmonic ability instabilities, effectiveness drops, crystal blackening, and beam distortion.

Exceptional hurt threshold compared to traditional KTP crystals, ensuring dependability in demanding applications.

Superior grey monitoring resistance, making it ideal for high repetition amount and substantial-energy laser units.

GTR-KTP crystals, developed with modern producing processes, GTR-KTP Crystal exhibit drastically bigger resistance to gray tracking and decrease absorption during the UV and visible regions, creating them appropriate for a variety of purposes like frequency doubling, parametric oscillation, and laser amplification.

Soon after air drying and subsequent cleansing by using a cotton cloth soaked in alcohol, the film area confirmed no indications of peeling or scratches.

State-of-the-art production procedures guaranteeing Excellent gray monitoring resistance and optical Homes.

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

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