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Theoretical modeling on resonating the second harmonic for ultraviolet laser generation

机译:共振产生二次谐波以产生紫外激光的理论模型

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The resonance of the second harmonic was proposed to improve conversion efficiency in ultraviolet laser. A schematic to generate the fourth harmonic laser with a compound cavity was modeled based on plane-wave approximation. The simulated results show that the mode-matching condition of the multi-mode lasers depends strongly on both frequency-mode spacing and resonator loss. In the case of the same cavity lengths and losses, the tolerance on the optical cavity length should be maintained on tens or hundreds of nanometer scales. Meanwhile, the TEM_(00) beam can be achieved due to the best mode-matching at resonance and the beam size increases arising from the cavity detune.
机译:提出了二次谐波的共振以提高紫外激光的转换效率。基于平面波近似,对产生具有复合腔的第四谐波激光器的示意图进行了建模。仿真结果表明,多模式激光器的模式匹配条件在很大程度上取决于频率模式间隔和谐振器损耗。在腔长度和损耗相同的情况下,光学腔长度的公差应保持在几十或几百纳米的尺度上。同时,由于谐振时的最佳模式匹配,可以实现TEM_(00)光束,并且由于腔失谐而导致光束尺寸增加。

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