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Landscapes on the edge: River intermittency in a warming world
Comment on “The 373 B.C. Helike (Gulf of Corinth, Greece) Earthquake and Tsunami, Revisited” by
Reply to “Comment on ‘The 373 B.C. Helike (Gulf of Corinth, Greece) Earthquake and Tsunami, Revisited’ by ” by Dora Katsonopoulou and Ioannis Koukouvelas
The 373 B.C. Helike (Gulf of Corinth, Greece) Earthquake and Tsunami, Revisited
Physics‐Based Simulation of Spatiotemporal Patterns of Earthquakes in the Corinth Gulf, Greece, Fault System
The Western Gulf of Corinth (Greece) 2020–2021 Seismic Crisis and Cascading Events: First Results from the Corinth Rift Laboratory Network
The stones of the Sanctuary of Delphi – Northern shore of the Corinth Gulf – Greece
Tipping the balance: Shifts in sediment production in an active rift setting
Are landscapes buffered to high-frequency climate change? A comparison of sediment fluxes and depositional volumes in the Corinth Rift, central Greece, over the past 130 k.y.
High-angle, not low-angle, normal faults dominate early rift extension in the Corinth Rift, central Greece
Building up or out? Disparate sequence architectures along an active rift margin—Corinth rift, Greece
Large Eighteenth–Nineteenth Century Earthquakes in Western Gulf of Corinth with Reappraised Size and Location
Abstract: The active Corinth rift records hanging-wall migration of faulting and slip-rate acceleration. The rift initiated at approximately 5–4 Ma, and older parts are well exposed in the northern Peloponnese. A new correlation of chrono- and lithostratigraphy and structure across the onland central to westernmost rift with offshore data reveals westward rift propagation, as well as northward fault migration. Northward fault migration ended first in the east, with the stabilization of major north-dipping faults that now bound the Gulf. The basin then propagated to the WNW in two stages, each involving the initiation of a new fault that propagated east to SE to link to the stable fault system. Extension rates accelerated in distinct steps as the rift opened to the west. The youngest faults in the westernmost rift are associated with high seismicity and highest geodetic extension due to rapid fault growth and linkage at depth. The early synrift succession infilled substantial inherited palaeo-relief. Antecedent rivers established vigorous sediment-routing systems that controlled facies distribution throughout rifting, albeit with drainage reorganization during fault-migration events. Multiple deepening events recorded in the stratigraphy can be due to lateral rift propagation. The transition from rift initiation to rift climax is, therefore, diachronous along the rift axis.