The best Side of CLBO Crystal
The best Side of CLBO Crystal
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全固态紫外激光器以其体积小、寿命长、效率高、光束质量好、调谐范围宽、谱线窄等优点,广泛应用于机械探伤、光刻、微加工和医学等领域,等,利用大功率近红外相干光源作为基于非线性调谐技术的基频源,通过多级变频产生紫外相干辐射被认为是发展紫外相干光源的重要途径。紫外相干光源的关键问题是研制紫外波段的非线性光学变频晶体。非线性光学晶体是实现频率变换的条件之一,因此对非线性光学晶体的生长、尺寸、损伤电阻、转换效率和允许的参数范围提出了越来越高的要求。
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On the opposite aspect, the facility scaling in the NIR laser is yet another factor to improve the common power with the 193-nm DUV laser. Due to lack of the higher-ability amplification solution of the NIR laser (as an example at 1553 nm), nonlinear frequency processes which include optical parameter oscillation (OPO) can be placed on develop a wavelength converter by shifting the wavelength from one μm to the specified wavelength as well as getting relative greater electrical power [21]. Not long ago, a diamond Raman laser confirmed its skill in reaching a significant electric power plus a higher conversion effectiveness within the 1st Stokes on the 1-μm laser [22,23], which suggests the possibility for being utilized in the 193-nm DUV laser generation as a result of its higher Raman get and enormous frequency shift.
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Its UV absorption edge reaches one hundred eighty nm. The powerful nonlinear optical coefficient of CLBO for frequency doubling at 1064nm is about twice as large as that of KDP. CLBO crystals can be developed through the stoichiometric melt with reduced viscosity.
The development in the 193-nm laser was shown by levels of SFG. In an effort to scale the DUV laser power correctly, a completely new thought with the 193-nm DUV laser generation is presented based upon the diamond Raman laser.