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Highly efficient single frequency blue laser generation by second harmonic generation of infrared lasers using quasi phase matching in periodically poled ferroelectric crystals.

机译:通过在周期性极化的铁电晶体中使用准相位匹配,通过红外激光的二次谐波生成来产生高效的单频蓝色激光。

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摘要

Performance and reliability of solid state laser diodes in the IR region exceeds those in the visible and UV part of the light spectrum. Single frequency visible and UV laser diodes with higher than 500 mW power are not available commercially. However we successfully stabilized a multi-longitudinal mode IR laser to 860 mW single frequency. This means high efficiency harmonic generation using this laser can produce visible and UV laser light not available otherwise. In this study we examined three major leading nonlinear crystals: PPMgO:SLN, PPKTP and PPMgO:SLT to generate blue light by second harmonic generation. We achieved record high net conversion efficiencies 81.3% using PPMgO:SLT (∼500 mW out), and 81.1% using PPKTP (∼700 mW out). In both these cases an external resonance buildup cavity was used. We also studied a less complicated single pass waveguide configuration (guided waist size of ∼ 5 um compared to ∼60 um) to generate blue. With PPMgO:SLN we obtained net 40.4% and using PPKT net 6.8% (110mW and 10.1 mW respectively).
机译:固态激光二极管在红外区域的性能和可靠性超过了光谱的可见光和紫外光部分。功率高于500 mW的单频可见光和UV激光二极管在市场上无法买到。但是,我们成功地将多纵向模式IR激光器稳定到860 mW的单频。这意味着使用此激光器产生的高效率谐波可以产生可见光和UV激光,而其他方法则无法使用。在这项研究中,我们研究了三种主要的非线性非线性晶体:PPMgO:SLN,PPKTP和PPMgO:SLT,可通过二次谐波产生蓝光。使用PPMgO:SLT(约500 mW输出)和PPKTP(约700 mW输出)实现了创纪录的高净转换效率81.3%。在这两种情况下,都使用了外部谐振腔。我们还研究了一种不那么复杂的单通波导配置(引导的腰围尺寸为〜5 um,而〜60 um)来生成蓝色。使用PPMgO:SLN,我们获得的净功率为40.4%,使用PPKT获得的净功率为6.8%(分别为110mW和10.1 mW)。

著录项

  • 作者

    Khademian, Ali.;

  • 作者单位

    University of North Texas.;

  • 授予单位 University of North Texas.;
  • 学科 Physics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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