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Visible and Mid-Infrared Supercontinuum Generation and Their Respective Application to Three-Dimensional Imaging and Stand-off Reflection Spectroscopy.

机译:可见和中红外超连续谱的产生及其在三维成像和支架反射光谱学中的应用。

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摘要

The thesis describes broadband supercontinuum (SC) generation in optical fibers for both the visible and mid-infrared regions of the spectrum, and their respective application to 3D imaging and stand-off reflection spectroscopy. Both SC sources leverage mature telecom technology, and are based on a common all-fiber integrated platform comprising a ∼1.55 mum distributed feedback seed laser diode amplified to high peak powers in two stages of cladding pumped Erbium or Erbium-Ytterbium fiber amplifiers.;A visible SC extending from 0.45--1.20 mum with 0.74 W of time-averaged power is demonstrated using a two step process. The output of the Er-Yb power amplifier is frequency doubled to ∼0.78 mum using a periodically poled lithium niobate crystal, followed by non-linear spectral broadening in 2m of high nonlinearity photonic crystal fiber. Numerical simulations based on solving the generalized non-linear Schrodinger equation are also presented to verify the underlying SC generation mechanisms and predict further improvements.;The above SC source is used in a Fourier domain line scan interferometer to measure the height and identify shape defects of ∼300 mum high solder balls in a ball grid array. The 3D imaging system has an axial resolution of ∼125 nm, transverse resolution of ∼15 mum, and an angular measurement range between 20 to 60 degrees depending on the sample surface roughness.;The mid-infrared SC source is generated by pumping a 9m long ZrE 4-BaF2-LaF3-AlF3-NaF (ZBLAN) fiber to obtain a spectrum spanning 0.8--4.3 mum with 3.9 W time-averaged power. The output power is linearly scalable with pump power, but requires optimization of the critical splices and thermal management of the gain fiber and pump diodes to ensure stable high power operation.;Finally, an application of the mid-IR SC is demonstrated by measuring the diffuse reflection spectra of solid samples at a stand-off distance of 5 m and 100 ms integration time. The samples can be distinguished using a correlation algorithm based on distinct spectral features in the reflection spectrum. Signal to noise ratio calculations show that the distance is limited by space constraints in our lab and can be extended to ∼150 m.
机译:论文描述了在光谱的可见光和中红外区域中光纤中的宽带超连续谱(SC)的产生,以及它们在3D成像和间隔反射光谱中的各自应用。这两个SC源均利用成熟的电信技术,并基于一个通用的全光纤集成平台,该平台包括一个约1.55微米的分布式反馈种子激光二极管,在两级包层泵浦Er或or- fiber光纤放大器中被放大到高峰值功率。使用两步过程演示了可见光SC从0.45--1.20毫米扩展到0.74 W的平均时间功率。使用周期性极化的铌酸锂晶体将Er-Yb功率放大器的输出倍频至〜0.78微米,然后在2m高非线性光子晶体光纤中进行非线性光谱展宽。还提出了基于求解广义非线性Schrodinger方程的数值模拟,以验证潜在的SC生成机理并预测进一步的改进。上面的SC源用于傅立叶域线扫描干涉仪中,以测量高度并识别形状的缺陷。球栅阵列中的〜300 m高焊锡球。 3D成像系统的轴向分辨率为〜125 nm,横向分辨率为〜15 mum,角度测量范围取决于样品表面的粗糙度,范围为20至60度。;中红外SC源是通过泵送9m来产生的长ZrE 4-BaF2-LaF3-AlF3-NaF(ZBLAN)光纤可在3.9 W时均功率下获得0.8--4.3 mum的光谱。输出功率可随泵浦功率线性变化,但需要优化关键接头以及增益光纤和泵浦二极管的热管理,以确保稳定的大功率工作。最后,通过测量中红外SC的应用来演示固体样品在5 m的距离和100 ms的积分时间处的漫反射光谱。可以使用基于反射光谱中不同光谱特征的相关算法来区分样本。信噪比计算表明,该距离在我们的实验室中受空间限制的限制,可以扩展到约150 m。

著录项

  • 作者

    Kumar, Malay.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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