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    <title>Reconstruction methods for single-shot diffractive imaging of free nanostructures with ultrashort x-ray and XUV laser pulses</title>
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    <namePart>Sander, Katharina</namePart>
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    <namePart>Issendorff, Bernd von</namePart>
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  <abstract type="Summary">With x-ray and XUV single-shot diffractive imaging on free nanoparticles it is possible to investigate structure and shape of the particles. The scattering image of the nanoparticle only contains the intensity distribution but not the phase of the scattered light. Thus, numerical methods are required to infer information from experimental data. In the thesis, different reconstruction methods are implemented, advanced and applied to different scattering scenarios to characterize diffraction patterns for different laser parameters, reconstruct optical properties and 3d shapes of nanotargets.&lt;eng&gt;</abstract>
  <abstract type="Summary">Mit Einzelschussmessungen an freien Nanoteilchen mit Hilfe von Röntgenstrahlung ist es möglich, die Teilchenstruktur zu untersuchen. Damit die Information aus Experimenten gewonnen werden kann, sind numerische Methoden notwendig, da das Streubild der Nanoteilchen nur die Inensitätsverteilung des gestreuten Lichtes, aber nicht die Phase bereitstellt. Es werden verschiedene Rekonstruktionsmethoden implementiert, weiterentwickelt und auf verschiedene Streuszenarien angewandt, um Streubilder für verschiedene Laserparameter zu charakterisieren, optische Eigenschaften und 3D-Formen zu rekonstruieren.&lt;ger&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Katharina Sander</note>
  <note>GutachterInnen: Thomas Fennel (Universität Rostock) ; Bernd von Issendorff (Universität Freiburg)</note>
  <note type="thesis">Dissertation Universität Rostock 2019</note>
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      <title>Reconstruction methods for single-shot diffractive imaging of free nanostructures with ultrashort x-ray and XUV laser pulses</title>
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      <publisher>Rostock : Universität Rostock, 2018</publisher>
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      <namePart>Sander, Katharina, 1989 - </namePart>
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