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  <abstract type="Summary">This thesis is divided into two parts. The first part aims at the determination of basic excitonic properties by considering central-cell corrections. For large principal quantum numbers, the nonparabolicity of the highest valence band is treated. For the analysis of the 1S paraexciton the additional coupling to LO phonons is addressed. The second part examines the absorption edge of the phonon-assisted transition into the 1S yellow orthoexciton and determines the corresponding deformation potential. The deformation potential is used to calculate the phonon-assisted Auger coefficient.&lt;eng&gt;</abstract>
  <abstract type="Summary">Die vorliegende Dissertation ist in zwei Teile unterteilt. Im ersten Teil werden grundlegende Exzitonenparameter bestimmt. Für große Hauptquantenzahlen wird die Nichtparabolizität des höchsten Valenzbandes betrachtet. Für die Analyse des gelben 1S Paraexzitons muss zusätzlich der Einfluss von LO Phononen berücksichtigt werden. Der zweite Teil befasst sich mit der Absorptionskante des phononassistierten Übergangs in das gelbe 1S Orthoexziton und dem dazugehörigen Deformationspotential. Mit dem Deformationspotential wurde der phononassistierte Augerkoeffizient berechnet.&lt;ger&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Dipl.-Phys. Florian Schöne</note>
  <note type="thesis">Dissertation Universität Rostock 2018</note>
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      <title>Optical properties of yellow excitons in cuprous oxide</title>
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