5 Simple Techniques For GTR-KTP Crystal
5 Simple Techniques For GTR-KTP Crystal
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Potassium Titanyl Phosphate (KTiOPO4 or KTP) is a superb nonlinear optical substance ideal for use in lots of optical techniques. It has higher nonlinear coefficient and secure Actual physical home.
GTR-KTP crystal has gray track resistance adequately larger than normal flux-developed KTP. It's extensive angular bandwidth and little stroll-off angle and wide temperature and spectral bandwidth. GTR-KTP crystals might be widely used in healthcare, military and meteorology fields.
These are produced at an optimally low temperature that cuts down the likelihood of defects, oxygen vacancies, crystal strains, or decreased steel centers.
Depending on The grey tracking resistance (GTR) KTP crystals, the functionality of a significant successful and compact intracavity frequency doubling 532 nm laser was investigated. The gray tracking test…
Q What on earth is eco-friendly semico... A At this time, the working principle of green semiconductor laser is to transform 1064nm infrared light emitted by infrared semiconductor laser into 532nm inexperienced gentle by means of nonlinear crystallization. Gre
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Its most popular software is to be a frequency doubler utilizing the 1064nm output of a Nd:YAG laser and to create 532nm laser. KTP’s Attributes also allow it to be exceptional for electro-optic modulation, optical parametric generation.
These kinds of crystals Have a very reduced initial IR absorption and therefore are much less afflicted by inexperienced light-weight than common KTP, So avoid the issues of harmonic energy instabilities, effectiveness drops, crystal blackening, and beam distortion.
Like our hydrothermally grown KTP crystals, flux grown KTP crystals also give great homogeneity. Below are a few in their distinct parameters:
The crystals are commonly used to double the frequency of Nd:YAG and Nd:YVO�?lasers, building visible inexperienced laser output (532 nm) from the basic 1064 nm wavelength.
GTR-KTP crystals, developed with progressive producing procedures, exhibit considerably greater resistance to grey monitoring and lessen absorption inside the UV and visual regions, generating them suited to a wide array of apps for example frequency doubling, parametric oscillation, and laser amplification.
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Advanced manufacturing processes making sure Excellent grey monitoring resistance and optical Homes.
Successful sub-nanosecond intracavity optical parametric oscillator pumped having a passively Q-switched Nd:GdVO4 laser