The Langeland Fault System unravelled: Quaternary fault reactivation along an elevated basement block between the North German and Norwegian–Danish basins
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[1] U. Polom,et al. The near-surface structure in the area of the Børglum fault, Sorgenfrei-Tornquist Zone, northern Denmark: Implications for fault kinematics, timing of fault activity and fault control on tunnel valley formation , 2022, Quaternary Science Reviews.
[2] J. Kley,et al. Impact of Late Cretaceous inversion and Cenozoic extension on salt structure growth in the Baltic sector of the North German Basin , 2021, Basin Research.
[3] O. Heidbach,et al. 3D crustal stress state of Germany according to a data-calibrated geomechanical model , 2021, Solid Earth.
[4] J. Kley,et al. Late Cretaceous to Paleogene exhumation in central Europe – localized inversion vs. large-scale domal uplift , 2020, Solid Earth.
[5] O. Clausen,et al. Thick- and thin-skinned basin inversion in the Danish Central Graben, North Sea – the role of deep evaporites and basement kinematics , 2020, Solid Earth.
[6] Christian Hübscher,et al. Misinterpretation of velocity pull‐ups caused by high‐velocity infill of tunnel valleys in the southern Baltic Sea , 2020 .
[7] M. Schnabel,et al. Structural Evolution at the Northeast North German Basin Margin: From Initial Triassic Salt Movement to Late Cretaceous‐Cenozoic Remobilization , 2020, Tectonics.
[8] C. Krawczyk,et al. Coherent diffraction imaging for enhanced fault and fracture network characterization , 2020, Solid Earth.
[9] Christian Hübscher,et al. Impact of Late Cretaceous to Neogene plate tectonics and Quaternary ice loads on supra-salt deposits at Eastern Glückstadt Graben, North German Basin , 2020, International Journal of Earth Sciences.
[10] D. Peacock,et al. Basement highs: Definitions, characterisation and origins , 2020, Basin Research.
[11] B. Schwarz,et al. Coherent wavefield subtraction for diffraction separation , 2019, GEOPHYSICS.
[12] D. Tanner,et al. Evaluation of deep crustal earthquakes in northern Germany – Possible tectonic causes , 2019, Terra Nova.
[13] N. Kukowski,et al. The timing of salt structure growth in the Southern Permian Basin (Central Europe) and implications for basin dynamics , 2018, Basin Research.
[14] M. Zoback,et al. The World Stress Map database release 2016: Crustal stress pattern across scales , 2018, Tectonophysics.
[15] Patrick Wu,et al. Glacially induced faulting along the NW segment of the Sorgenfrei-Tornquist Zone, northern Denmark: Implications for neotectonics and Lateglacial fault-bound basin formation , 2018 .
[16] D. Gajewski,et al. Accessing the diffracted wavefield by coherent subtraction , 2017 .
[17] Christian Hübscher,et al. Late Cretaceous to recent tectonic evolution of the North German Basin and the transition zone to the Baltic Shield/southwest Baltic Sea , 2017 .
[18] R. Littke,et al. Burial, temperature and maturation history of the Ringkøbing-Fyn High, Denmark , 2016 .
[19] Christian Hübscher,et al. High-resolution shear-wave seismics across the Carlsberg Fault zone south of Copenhagen - Implications for linking Mesozoic and late Pleistocene structures , 2016 .
[20] U. Polom,et al. Triassic to recent tectonic evolution of a crestal collapse graben above a salt-cored anticline in the Glückstadt Graben/North German Basin , 2016 .
[21] J. Jensen,et al. Geo-acoustic modelling of late and postglacial sedimentary units in the Baltic Sea and their acoustic visibility , 2016 .
[22] J. Mangerud,et al. The last Eurasian ice sheets – a chronological database and time‐slice reconstruction, DATED‐1 , 2016 .
[23] F. Jørgensen,et al. Neotectonic deformation of a Late Weichselian outwash plain by deglaciation‐induced fault reactivation of a deep‐seated graben structure , 2015 .
[24] Christian Hübscher,et al. Structure and evolution of the Northeastern German Basin and its transition onto the Baltic Shield , 2010 .
[25] E. Rasmussen. Neogene inversion of the Central Graben and Ringkøbing-Fyn High, Denmark , 2009 .
[26] E. Rasmussen,et al. Mesozoic–Cenozoic exhumation events in the eastern North Sea Basin: a multi‐disciplinary study based on palaeothermal, palaeoburial, stratigraphic and seismic data , 2007 .
[27] M. Scheck‐Wenderoth,et al. Basin evolution of the northern part of the Northeast German Basin — Insights from a 3D structural model , 2007 .
[28] Flemming Jørgensen,et al. Buried and open tunnel valleys in Denmark—erosion beneath multiple ice sheets , 2006 .
[29] A. Murray,et al. A sedimentary record from a deep Quaternary valley in the southern Lillebælt area, Denmark: Eemian and Early Weichselian lithology and chronology at Mommark , 2006 .
[30] P. Krzywiec. Structural inversion of the Pomeranian and Kuiavian segments of the Mid-Polish Trough -- lateral variations in timing and structural style , 2006 .
[31] O. Graversen. The Jurassic-Cretaceous North Sea Rift Dome and Associated Basin Evolution* , 2006 .
[32] A. Dehghani,et al. The Mesozoic–Cenozoic structural framework of the Bay of Kiel area, western Baltic Sea , 2005 .
[33] J. Ehlers,et al. Pleistocene glaciations of North Germany , 2004 .
[34] R. Thomsen,et al. Hydrogeological mapping as a basis for establishing site-specific groundwater protection zones in Denmark , 2004 .
[35] W. Lemke,et al. Late‐ and postglacial history of the Great Belt, Denmark , 2004 .
[36] O. V. Vejbæk,et al. Post mid-Cretaceous inversion tectonics in the Danish Central Graben – regionally synchronous tectonic events ? , 2003 .
[37] J. Wunderlich,et al. High-resolution sub-bottom profiling using parametric acoustics , 2003 .
[38] E. Landa,et al. Seismic monitoring of diffraction images for detection of local heterogeneities , 1998 .
[39] E. Rutter,et al. Fault-zone reactivation: kinematics and mechanisms , 1986, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[40] B. Pjetursson,et al. Free, online Danish shallow geological data , 1969 .
[41] J. Jensen,et al. Late glacial to early Holocene development of southern Kattegat , 1969 .