Fascination About GTR-KTP Crystal
Fascination About GTR-KTP Crystal
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The crystals are Employed in clinical lasers for methods which include laser surgical procedures, tattoo removal, and pores and skin resurfacing, exactly where steady and dependable laser general performance is crucial.
Comparison in between shared and coupled resonators for passively Q-switched Nd:GdVO4 intracavity optical parametric oscillators
GAMDAN Optics hydrothermally grown KTP crystals Possess a substantially better grey tracking resistance in comparison to flux grown KTP crystals.
A compact effective eye-Safe and sound intracavity optical parametric oscillator pumped by a passively Q-switched Nd:YAG laser in the shared cavity configuration with effective conversion efficiency as large as fifty one% is offered.
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Through Image-thermal Prevalent-path Interferometer, the event of gray monitoring may be measured by an increase of bulk absorption through a potent CW 532 nm inexperienced laser inside of quite a few minutes.
Very productive intracavity frequency doubling 532-nm laser determined by The grey monitoring website resistance KTP crystal
This kind of crystals Use a lower Preliminary IR absorption and they are much less influenced by environmentally friendly mild than common KTP, thus keep away from the issues of harmonic power instabilities, efficiency drops, crystal blackening, and beam distortion.
Remarkable damage threshold in contrast to conventional KTP crystals, guaranteeing trustworthiness in demanding programs.
The crystals are commonly utilized to double the frequency of Nd:YAG and Nd:YVO�?lasers, making seen eco-friendly laser output (532 nm) from the fundamental 1064 nm wavelength.
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Adhesion Examination Compliant with MIL-C-675C army standards, an adhesion exam included applying a tape that satisfies LT-90 specifications on to the lens film layer. The tape was affixed thoroughly then eliminated vertically. This course of action was done three times, leading to no blistering or peeling.
Intracavity optical parametric oscillator at 1572-nm wavelength pumped by passively Q-switched diode-pumped Nd:YAG laser