High-resolution experiments on strong-field ionization of atoms and molecules : test of tunneling theory, the role of doubly excited states, and channel-selective electron spectra

Author(s)

    • Fechner, Lutz

Bibliographic Information

High-resolution experiments on strong-field ionization of atoms and molecules : test of tunneling theory, the role of doubly excited states, and channel-selective electron spectra

Lutz Fechner

(Springer theses : recognizing outstanding Ph. D. research)

Springer, c2016

  • : hbk

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Includes bibliographical references

Description and Table of Contents

Description

In this thesis, the ionization of atoms and small molecules in strong laser fields is experimentally studied using a reaction microscope. The population of autoionizing doubly excited states in the laser fields is proven and a possible connection to the well-known dielectronic recombination processes is discussed. The fundamental process of tunnel ionization in strong laser fields is subject of investigation in a pump-probe experiment with ultrashort laser pulses. A coherent superposition of electronic states in singly charged argon ions is created within the first, and subsequently tunnel-ionized with the second pulse. This gives access to state-selective information about the tunneling process and allows to test common models. Moreover, the ionization of krypton and argon at different wavelengths is studied, from the multiphoton to the tunneling regime. The wavelength-dependent investigations are furthermore extended to molecular hydrogen. In addition to ionization, this system might undergo different dissociative processes. Channel-selective electron momentum distributions are presented and compared to each other.

Table of Contents

Introduction.- Strong Laser Fields and Ultrashort Laser Pulses.- Ionization in Strong, Ultrashort Laser Pulses.- The Reaction Microscope.- Tunnel Ionization from a Coherent Superposition in Ar+.- Population of Doubly Excited States in Strong Laser Pulses.- Channel-selective Electron Spectra for H2 at Different Wavelengths.- Conclusion and Outlook.

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Details

  • NCID
    BB22127607
  • ISBN
    • 9783319320458
  • Country Code
    sz
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    Switzerland
  • Pages/Volumes
    xiv, 151 p.
  • Size
    25 cm
  • Classification
  • Subject Headings
  • Parent Bibliography ID
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