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Therms lensing effects and nonlinear refractive indices of fluoride crystals induced by high-power ultrafast lasers

机译:高功率超快激光器诱导的氟化物晶体的热透镜效果和非线性折射率

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摘要

Thermo-optical and nonlinear property characterization of refractive optical components is essential for endoscopic instrumentation that utilizes high-power, high-repetition-rate ultrafast lasers. For example, ytterbium-doped fiber lasers are well suited for ultrafast laser microsurgery applications; however, the thermo-optical responses of many common lens substrates are not well understood at 1035 nm wavelength. Using a z-scan technique, we first measured the nonlinear refractive indices of CaF2, MgF2, and BaF2 at 1035 nm and found values that match well with those from the literature at 1064 nm. To elucidate effects of thermal lensing, we performed z-scans at multiple laser repetition rates and multiple average powers. The results showed negligible thermal effects up to an average power of 1 Wand at 10 W material-specific thermal lensing significantly altered z-scan measurements. Using a 2D temperature model, we could determine the source of the observed thermal lensing effects. Linear absorption was determined as the main source of heating in these crystals. On the other hand, inclusion of nonlinear absorption as an additional heat source in the simulations showed that thermal lensing in borosilicate-glass was strongly influenced by nonlinear absorption. This method can potentially provide a sensitive method to measure small nonlinear absorption coefficients of transparent optical materials. These results can guide design of miniaturized optical systems for ultrafast laser surgery and deep-tissue imaging probes. (C) 2020 Optical Society of America
机译:折射光学元件的热光学和非线性特性对于利用大功率,高重复率超速激光器的内窥镜仪器是必不可少的。例如,掺杂镱的纤维激光器非常适合超快激光显微外科应用;然而,许多常见镜片基板的热光学响应在1035nm波长下不太了解。使用Z扫描技术,首先在1035nm处测量CaF2,MgF2和BAF2的非线性折射率,并发现与1064nm的文献相匹配的值。为了阐明热透镜的效果,我们以多种激光重复率和多个平均功率进行Z扫描。结果显示出可忽略的热效应为10W材料特定的热透镜的1棒的平均功率显着改变了Z扫描测量。使用2D温度模型,我们可以确定观察到的热镜头效果的来源。线性吸收被确定为这些晶体中加热的主要来源。另一方面,将非线性吸收作为额外的热源在模拟中显示出硼硅酸盐 - 玻璃中的热透镜受到非线性吸收的强烈影响。该方法可以提供一种敏感方法来测量透明光学材料的小型非线性吸收系数。这些结果可以指导小型化光学系统的设计,用于超快激光手术和深组织成像探针。 (c)2020美国光学学会

著录项

  • 来源
    《Applied optics》 |2020年第28期|共8页
  • 作者

    Andrus Liam; Ben-Yakar Adela;

  • 作者单位

    Univ Texas Austin Dept Biomed Engn 107 West Dean Keeton St Stop C0800 Austin TX 78712 USA;

    Univ Texas Austin Dept Biomed Engn 107 West Dean Keeton St Stop C0800 Austin TX 78712 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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