Examine This Report on GTR-KTP Crystal
Examine This Report on GTR-KTP Crystal
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GTR-KTP crystals are widely utilized in programs that desire significant-effectiveness nonlinear optical supplies with enhanced durability and resistance to gray monitoring. Some notable programs involve:
Enhanced bulk absorption Qualities, cutting down IR absorption and improving General optical functionality.
They are really created at an optimally very low temperature that lessens the likelihood of defects, oxygen vacancies, crystal strains, or reduced metallic centers.
KTP is a wonderful nonlinear crystal, but its gray monitoring phenomena limits its use in significant repetition rate and large electrical power laser units. CASTECH's GTR-KTP crystal has higher grey tracking resistance compared to common flux grown KTP crystal.
Comparison among the shared and coupled resonators for the intracavity optical parametric oscillators pumped by passively Q-switched Nd:GdVO4 lasers is experimentally manufactured. The shared and coupled…
Remarkably efficient intracavity frequency doubling 532-nm laser based upon The grey monitoring resistance KTP crystal
Flux developed KTP crystals offer an improved price edge. It is also simply fabricated in larger dimensions.
In addition, the shut autoclave development system permits zero to small chemical impurities plus the regular progress rate lends an excellent homogeneity or uniform generate through the bulk crystal.
We existing On this report an efficient KTP-based intracavity optical parametric oscillator pushed by a diode-pumped Nd:GdVO4/Cr:YAG passively Q-switched laser. For The very first time, a novel folded…
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Adhesion Exam Compliant with MIL-C-675C armed service benchmarks, an adhesion examination concerned making use of a tape that satisfies LT-90 requirements on to the lens movie layer. The tape was affixed absolutely and after that taken out vertically. This technique was done three times, causing no blistering or peeling.
Intracavity optical parametric oscillator at 1572-nm wavelength pumped by passively Q-switched diode-pumped Nd:YAG laser