Why permafrost rocks become unstable: a rock–ice‐mechanical model in time and space M Krautblatter, D Funk, FK Günzel Earth Surface Processes and Landforms 38 (8), 876-887, 2013 | 406 | 2013 |
Mountain permafrost: development and challenges of a young research field W Haeberli, J Noetzli, L Arenson, R Delaloye, I Gärtner-Roer, S Gruber, ... Journal of glaciology 56 (200), 1043-1058, 2010 | 252 | 2010 |
Ice loss and slope stability in high-mountain regions P Deline, S Gruber, R Delaloye, L Fischer, M Geertsema, M Giardino, ... Snow and ice-related hazards, risks, and disasters, 521-561, 2015 | 196 | 2015 |
Temperature‐calibrated imaging of seasonal changes in permafrost rock walls by quantitative electrical resistivity tomography (Zugspitze, German/Austrian Alps) M Krautblatter, S Verleysdonk, A Flores‐Orozco, A Kemna Journal of Geophysical Research: Earth Surface 115 (F2), 2010 | 188 | 2010 |
Electrical resistivity tomography monitoring of permafrost in solid rock walls M Krautblatter, C Hauck Journal of Geophysical Research: Earth Surface 112 (F2), 2007 | 149 | 2007 |
Debris flow-dominated and rockfall-dominated talus slopes: Genetic models derived from GPR measurements O Sass, M Krautblatter Geomorphology 86 (1-2), 176-192, 2007 | 146 | 2007 |
A two‐phase mechanical model for rock‐ice avalanches SP Pudasaini, M Krautblatter Journal of Geophysical Research: Earth Surface 119 (10), 2272-2290, 2014 | 141 | 2014 |
The mechanics of landslide mobility with erosion SP Pudasaini, M Krautblatter Nature communications 12 (1), 6793, 2021 | 134 | 2021 |
Quantifying rock fatigue and decreasing compressive and tensile strength after repeated freeze‐thaw cycles H Jia, W Xiang, M Krautblatter Permafrost and Periglacial processes 26 (4), 368-377, 2015 | 127 | 2015 |
A nonlinear model coupling rockfall and rainfall intensity based on a four year measurement in a high Alpine rock wall (Reintal, German Alps) M Krautblatter, M Moser Natural Hazards and Earth System Sciences 9 (4), 1425-1432, 2009 | 114 | 2009 |
State of the art in rockfall–forest interactions L Dorren, F Berger, M Jonsson, M Krautblatter, M Mölk, M Stoffel, A Wehrli Schweizerische Zeitschrift fur Forstwesen 158 (6), 128-141, 2007 | 107 | 2007 |
The efficacy of frost weathering processes in alpine rockwalls D Draebing, M Krautblatter Geophysical Research Letters 46 (12), 6516-6524, 2019 | 94 | 2019 |
Towards a uniform concept for the comparison and extrapolation of rockwall retreat and rockfall supply M Krautblatter, R Dikau Geografiska Annaler: Series A, Physical Geography 89 (1), 21-40, 2007 | 93 | 2007 |
P-wave velocity changes in freezing hard low-porosity rocks: a laboratory-based time-average model D Draebing, M Krautblatter The Cryosphere 6 (5), 1163-1174, 2012 | 90 | 2012 |
Thermo‐cryogenic controls of fracture kinematics in permafrost rockwalls D Draebing, M Krautblatter, T Hoffmann Geophysical Research Letters 44 (8), 3535-3544, 2017 | 82 | 2017 |
Significance of rockfall magnitude and carbonate dissolution for rock slope erosion and geomorphic work on Alpine limestone cliffs (Reintal, German Alps) M Krautblatter, M Moser, L Schrott, J Wolf, D Morche Geomorphology 167, 21-34, 2012 | 82 | 2012 |
Ice loss from glaciers and permafrost and related slope instability in high-mountain regions P Deline, S Gruber, F Amann, X Bodin, R Delaloye, J Failletaz, L Fischer, ... Snow and ice-related hazards, risks, and disasters, 501-540, 2021 | 80 | 2021 |
Current glacier recession causes significant rockfall increase: the immediate paraglacial response of deglaciating cirque walls I Hartmeyer, R Delleske, M Keuschnig, M Krautblatter, A Lang, L Schrott, ... Earth Surface Dynamics Discussions 2020, 1-25, 2020 | 74 | 2020 |
Forecasting rock slope failure: how reliable and effective are warning systems? M Sättele, M Krautblatter, M Bründl, D Straub Landslides 13, 737-750, 2016 | 74 | 2016 |
Interaction of thermal and mechanical processes in steep permafrost rock walls: A conceptual approach D Draebing, M Krautblatter, R Dikau Geomorphology 226, 226-235, 2014 | 69 | 2014 |