HR: 1340h
AN: T53A-1121 [Abstracts]
TI: Segmented Forearc Deformation Along the Nicoya Peninsula Seismic Gap, Costa Rica
AU: * Marshall, J S
EM: marshall@csupomona.edu
AF: Geological Sciences Dept, Cal Poly Pomona Univ, 3801 W Temple Ave, Pomona, CA
91768, United States
AU: LaFromboise, E J
AF: Geological Sciences Dept, California State Univ Northridge, 18111 Nordhoff St, Northridge,
CA 91330, United States
AU: Gardner, T W
AF: Dept. of Geosciences, Trinity Univ, 1 Trinity Pl, San Antonio, TX 78212, United States
AU: Protti, M
AF: OVSICORI, Univ Nacional, Heredia, 3000, Costa Rica
AB:
The Nicoya Peninsula, Costa Rica deforms in response to rapid NE subduction of the Cocos plate at the Middle
America Trench (9-10 cm/yr). This emergent outer fore arc peninsula lies 60-80 km inboard of the trench and
coincides with a locked segment of the seismogenic zone. The Nicoya segment is a high-potential seismic gap,
with a slip deficit of >5 m since the last major earthquake (M7.7, 1950). That event produced widespread
damage and up to 1.0 m of coseismic coastal uplift. Net Quaternary deformation on the Nicoya Peninsula is
recorded by emergent marine terraces at the coast, and by uplifted alluvial fill within interior valleys. Recent field
mapping, surveying, and isotopic dating provide new constraints on deformation patterns and upper-plate
faulting. Local uplift anomalies reveal upper plate faults that may accommodate a significant fraction of fore arc
deformation (shortening and/or lateral sliver transport).
At the peninsula's southern tip (Cabo Blanco), a prominent uplifted marine erosion surface (Cobano surface)
encompasses at least three distinct Pleistocene terraces at 30-220 m elevation. Preliminary OSL dating yields
terrace ages consistent with OIS 3-5 sea level high stands (30-120 ka), indicating net uplift at 1.0-2.0 m/k.y. A NW-
striking thrust fault (Delicias fault) offsets the upper terrace by 40 m, thrusting Cretaceous basalt over Plio-
Pleistocene marine sediments. Radiocarbon ages for adjacent Holocene terraces (Cabuya surface) indicate
recent uplift at 1.5-3.5 m/k.y. On the peninsula's south-central coastline (Puerto Carrillo to Playa Camaronal)
marine terraces and related fluvial straths (Carrillo-Camaronal surface) occur at 20-40 m elevation. Correlations
with dated Cobano terraces and Quaternary sea level curves suggest terrace formation between 80-215 ka (OIS
5-7) and net uplift rates of 0.2-0.3 m/k.y. Along the northern Nicoya coast (Tamarindo to Nosara), a 3 km wide
wave-cut surface (Iguanazul surface) includes three treads with paleo-shorelines at 10-45 m elevation. Age
correlations (as above) suggest terrace formation between 80-215 ka (OIS 5-7) and net uplift rates of 0.1-0.2
m/k.y. Radiocarbon ages for Holocene beachrock horizons are consistent with recent uplift at <0.5 m/k.y.
Within the interior Morote Valley, geomorphic anomalies indicate deformation along the NW-striking Morote fault
(e.g., uplifted and incised alluvial fill, irregular drainage networks, stream piracy, and abrupt mountain facets).
Uplifted Pleistocene alluvium (La Mansion surface) is incised 5-40 m by stream networks. At one site, fluvial
gravels overlie a paleosol on fine-grain wetland deposits, 10 m above local base level. In some areas, the paleo-
valley gradient is opposite that of modern incised streams, indicating capture and drainage reversal. The Morote
fault forms a prominent NW-trending lineament oriented sub-parallel to the plate margin. A composite focal
mechanism for shallow seismicity along this trend (CRSEIZE) shows dextral slip for a NW-striking nodal plane,
consistent with NW fore arc sliver escape.
The observed differences in Quaternary deformation along the Nicoya Peninsula coincide with three contrasting
domains of subducting seafloor offshore (EPR, CNS-1, CNS-2). Upper-plate segmentation may reflect along-
strike variations in subducting plate roughness, coupling, and seismogenic zone geometry (e.g., dip angle, depth
of up-dip and down-dip limits). This segmentation may have implications for understanding the rupture behavior
and earthquake hazards along the Nicoya seismic gap.
DE: 1824 Geomorphology: general (1625)
DE: 7230 Seismicity and tectonics (1207, 1217, 1240, 1242)
DE: 8104 Continental margins: convergent
DE: 8170 Subduction zone processes (1031, 3060, 3613, 8413)
DE: 8175 Tectonics and landscape evolution
SC: Tectonophysics [T]
MN: 2007 Fall Meeting