4.7 Article

Seismicity During Continental Breakup in the Red Sea Rift of Northern Afar

Journal

JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH
Volume 123, Issue 3, Pages 2345-2362

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1002/2017JB014902

Keywords

Continental Rifting; Seismicity; Afar; East Africa; Volcanic Seismicity

Funding

  1. Natural Environment Research Council (NERC) [R8/H10/64]
  2. NERC [NE/L002531/1, NE/L013932]
  3. Roy Franklin OBE
  4. King Abdullah University of Science and Technology [OSR-2015-CRG4-2643]
  5. BHP Billiton
  6. University of Bristol
  7. Engineering and Physical Sciences Research Council (EPSRC) [DTG EP/L504919/1]
  8. Statoil
  9. NERC [NE/L013509/1, NE/K010913/1, NE/L01372X/1] Funding Source: UKRI

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Continental rifting is a fundamental component of plate tectonics. Recent studies have highlighted the importance of magmatic activity in accommodating extension during late-stage rifting, yet the mechanisms by which crustal thinning occurs are less clear. The Red Sea rift in Northern Afar presents an opportunity to study the final stages of continental rifting as these active processes are exposed subaerially. Between February 2011 and February 2013 two seismic networks were installed in Ethiopia and Eritrea. We locate 4,951 earthquakes, classify them by frequency content, and calculate 31 focal mechanisms. Results show that seismicity is focused at the rift axis and the western marginal graben. Rift axis seismicity accounts for similar to 64% of the seismic moment release and exhibits a swarm-like behavior. In contrast, seismicity at the marginal graben is characterized by high-frequency earthquakes that occur at a constant rate. Results suggest that the rift axis remains the primary locus of seismicity. Low-frequency earthquakes, indicative of magmatic activity, highlight the presence of a magma complex similar to 12km beneath Alu-Dalafilla at the rift axis. Seismicity at the marginal graben predominantly occurs on westward dipping, antithetic faults. Focal mechanisms show that this seismicity is accommodating E-W extension. We suggest that the seismic activity at the marginal graben is either caused by upper crustal faulting accommodating enhanced crustal thinning beneath Northern Afar or as a result of flexural faulting between the rift and plateau. This seismicity is occurring in conjunction with magmatic extension at the rift axis, which accommodates the majority of long-term extension.

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