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Tabletop coherent diffractive microscopy with soft x-ray illumination from high harmonic generation at 29 nm and 13.5 nm.

机译:台式相干衍射显微镜,在29 nm和13.5 nm处产生高次谐波,并具有软X射线照明。

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摘要

Soft x-ray microscopy allows imaging at higher resolution than is possible with optical wavelengths. At the same time, it allows imaging of the internal structure of thick samples that cannot be viewed with electron microscopy. Optics for the soft x-ray region of the spectrum are limited, but coherent diffractive imaging techniques use computerized image reconstruction in place of a lens to form high-resolution images with x-rays. This dissertation presents a practical soft x-ray diffractive microscope with sub-100 nm resolution using tabletop coherent soft x-rays at 13.5 nm and 29 nm [1]. This represents the first demonstration of tabletop coherent imaging with 13.5 nm from high harmonics. Images with holography and phase retrieval are shown, with near-diffraction-limited resolution down to 53 nm [2--4]. The first tabletop diffractive images of biological samples with 13.5 nm and 29 nm beams are also shown [5]. This thesis also presents work on the construction of a high-power, high-repetition-rate laser amplifier implementing carrier-envelope phase stabilization. CEP stabilization provides unprecedented levels of control over the full electric field of an ultrafast laser. The first stage of the amplifier was stabilized to 250 mrad CEP noise on 100s timescales. The route to stabilizing the full 10 kHz, 30 W amplifier is outlined. This laser will be used for future coherent diffractive imaging applications at using high harmonic generation at 13.5 nm and shorter wavelengths, and will also be used for time-resolved studies of molecular dissociation [6].
机译:软X射线显微镜可以实现比光学波长更高的分辨率成像。同时,它可以对厚样品的内部结构进行成像,而这是电子显微镜无法观察到的。光谱的软X射线区域的光学器件是有限的,但是相干衍射成像技术使用计算机图像重建代替透镜来形成具有X射线的高分辨率图像。本文提出了一种实用的软X射线衍射显微镜,其分辨率为100 nm以下,使用13.5 nm和29 nm的台式相干软X射线[1]。这是来自高谐波的13.5 nm桌面相干成像的首次演示。显示了具有全息图和相位恢复的图像,其近衍射极限分辨率低至53 nm [2--4]。还显示了具有13.5 nm和29 nm光束的生物样品的第一张桌面衍射图像[5]。本文还提出了构建具有载波包络相位稳定功能的高功率,高重复率激光放大器的工作。 CEP稳定可对超快激光器的整个电场进行前所未有的控制。放大器的第一级在100s时标上稳定到250 mrad CEP噪声。概述了稳定整个10 kHz,30 W放大器的途径。该激光器将用于未来的相干衍射成像应用中,该技术将在13.5 nm和更短的波长上使用高次谐波产生,并且还将用于分子解离的时间分辨研究[6]。

著录项

  • 作者

    Raymondson, Daisy Arrelle.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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