• Forschungsschwerpunkte

    • Ambient noise
    • Receiver Funktionen und Polarization von seismischen Wellen
    • Arrayseismologie
  • Vita

    Akademische Ausbildung

    -
    Promotion (Universität Potsdam)
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    Studium (Universität Potsdam, Diplom Geophysiker)

    Beruflicher Werdegang

    seit
    wissenschaftliche Mitarbeiterin, akademische Rätin (Universität Münster)
    -
    wissenschaftliche Mitarbeiterin, PostDoc (Universität Potsdam)
    -
    wissenschaftliche Mitarbeiterin, PostDoc (Universität Leipzig)
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    wissenschaftliche Mitarbeiterin, PostDoc (GEOMAR Helmholtz Zentrum für Ozeanforschung Kiel)
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    Stipendiantin, Doktorandin (Universität Potsdam)
    -
    wissenschaftliche Mitarbeiterin, Doktorandin (Universität Potsdam)
  • Publikationen

    • Hannemann Katrin, Eulenfeld Tom, Krüger Frank, Dahm Torsten. . ‘Seismic scattering and absorption of oceanic lithospheric S waves in the Eastern North Atlantic.’ Geophysical Journal International 229, Nr. 2: 948-961. doi: 10.1093/gji/ggab493.
    • Rein, T, Hannemann, K, Thomas, C, Korn, M. . ‘Location and characteristics of the X-discontinuity beneath SW Morocco and the adjacent shelf area using P-wave receiver functions.’ Geophysical Journal International 223 (3). doi: 10.1093/gji/ggaa379.
    • Krüger, F, Dahm, T, Hannemann, K. . ‘Mapping of Eastern North Atlantic Ocean seismicity from Po/So observations at a mid-aperture seismological broad-band deep sea array.’ Geophysical Journal International 221 (2). doi: 10.1093/gji/ggaa054.
    • Petersen, F, Kopp, H, Lange, D, Hannemann, K, Urlaub, M. . ‘Measuring tectonic seafloor deformation and strain-build up with acoustic direct-path ranging.’ Journal of Geodynamics 124. doi: 10.1016/j.jog.2019.01.002.
    • Hannemann, K, Krüger, F, Dahm, T, Lange, D. . ‘Structure of the oceanic lithosphere and upper mantle north of the Gloria Fault in the eastern mid-Atlantic by receiver function analysis.’ Journal of Geophysical Research 122 (10). doi: 10.1002/2016JB013582.
    • Hannemann, K. . Seismological investigation of the oceanic crust und upper mantle using an ocean bottom station array in the vicinity of the Gloria fault (eastern mid Atlantic) Dissertationsschrift, Universität Potsdam.
    • Hannemann, K, Krüger, F, Dahm, T, Lange, D. . ‘Oceanic lithospheric S-wave velocities from the analysis of P-wave polarization at the ocean floor.’ Geophysical Journal International 207 (3). doi: 10.1093/gji/ggw342.
    • Hannemann, K, Krüger, F, Dahm, T. . ‘Measuring of clock drift rates and static time offsets of ocean bottom stations by means of ambient noise.’ Geophysical Journal International 196 (2). doi: 10.1093/gji/ggt434.
    • Hannemann, K, Papzachos, C, Ohrnberger, M, Savvaidis, A, Anthymidis, M, Lontsi, A M. . ‘Three-dimensional shallow structure from high-frequency ambient noise tomography: New results for the Mygdonia basin-Euroseistest area, northern Greece.’ Journal of Geophysical Research 119 (6).
    • Paasche, H, Rumpf, M, Lontsi, A M, Hausmann, J, Hannemann, K, Fechner, T, Ohrnberger, M, Werban, U, Tronicke, J, Krüger, F, Dietrich, P. . ‘MuSaWa: Multi-Scale S-wave Tomography for Exploration and Risk Assessment of Development Sites.’ In Tomography of the Earth’s Crust: From Geophysical Sounding to Real-Time Monitoring, edited by Weber, M, Münch, U, 95-114. doi: 10.1007/978-3-319-04205-3_6.