Examine This Report on CLBO Crystal
Examine This Report on CLBO Crystal
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We summarized The existing advancement status with the substantial-energy DUV laser both for the wavelength of FHG from the one-μm laser and at 193 nm. The current progress from the stable-state/fiber laser, together with the nonlinear optical crystals, prompts not just the normal power and also the beam high quality (coherence) on the DUV lasers to an unparalleled stage.
By way of example, The present concave OC could be replaced by a plane mirror which could mitigate the facility density about the surface of M1 plus the diamond. Moreover, working with significant problems threshold coatings for M1 and diamond would also improve the output ability with none damages. Then, the NIR laser within the 2nd Stokes wavelength might be significant more than enough, and its great beam good quality, to crank out the ultimate DUV laser at 193 nm that has a significant normal ability.
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Both equally the 1040 nm and 1078 nm laser originate from a single twin-wavelength Yb-doped fiber laser. Each individual laser is amplified by levels of fiber amplifier and Yb-doped products amplifier, respectively.
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Tunable ultraviolet laser source according to strong-state dye laser engineering and CsLiB6O10 harmonic era
Its UV absorption edge reaches 180 nm. The effective nonlinear optical coefficient of CLBO for frequency doubling at 1064nm is about 2 times as massive as that of KDP. CLBO crystals could be developed in the stoichiometric melt with lessen viscosity.
The event of the 193-nm laser was shown by levels of SFG. As a way to scale the DUV laser power properly, a new principle of your 193-nm DUV laser generation is offered based on the diamond Raman laser.