A tale of two islands: tectonic and orbital controls on marine terrace reoccupation, Channel Islands National Park, California, USA
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Published:2023-12-15
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Volume:
Page:
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ISSN:0267-8179
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Container-title:Journal of Quaternary Science
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language:en
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Short-container-title:J Quaternary Science
Author:
Muhs Daniel R.1ORCID,
Groves Lindsey T.2,
Simmons Kathleen R.1,
Schumann R. Randall1ORCID,
DeVogel Stephen B.3
Affiliation:
1. U.S. Geological Survey, MS 980, Box 25046 Federal Center Denver 80225 CO
2. Department of Malacology Natural History Museum of Los Angeles County 900 Exposition Blvd. Los Angeles 90007 CA
3. Amino Acid Geochronology Laboratory, Institute of Arctic and Alpine Research University of Colorado Boulder 80309 CO
Abstract
AbstractIn areas of low uplift rate on the Pacific Coast of North America, reoccupation of emergent marine terraces by later high sea‐stands has been hypothesised to explain the existence of thermally anomalous fauna (mixtures of warm and cool species) of last interglacial age. If uplift rates have been low for much of the Quaternary, it follows that higher (older) terraces should also show evidence of reoccupation. Strontium isotope analyses of fossils from a high‐elevation marine terrace on Anacapa Island, California, yield ages ranging from ~2.4–2.3 Ma to ~1.4–1.5 Ma. These results indicate that terrace reoccupation and fossil mixing on Anacapa Island could have taken place over several interglacial periods in the early Pleistocene. Terrace reoccupation over this time period is likely a function of both a low uplift rate and the timing of orbital forcing of glacial–interglacial cycles. Climate change in the early Pleistocene was modulated by the 41 ka obliquity cycle, and glacial–interglacial cycles were much shorter than later in the Pleistocene. Nearby San Miguel Island also has evidence of terrace reoccupation, with Sr isotope ages of shells from several high‐elevation terraces ranging from ~1.21–1.25 Ma to ~0.43–0.50 Ma. However, the frequency of terrace reoccupation was lower than on Anacapa Island. The uplift rate of San Miguel Island is higher than that of Anacapa Island and terraces formed when glacial–interglacial cycles were longer. The frequency of marine terrace reoccupation is controlled by the rate of tectonic uplift and the timing of orbital forcing of sea level change during glacial–interglacial cycles.
Funder
U.S. Geological Survey
Subject
Paleontology,Earth and Planetary Sciences (miscellaneous),Arts and Humanities (miscellaneous)
Reference99 articles.
1. Tegulidae and Turbinidae of the northeast Pacific
2. Global environmental predictors of benthic marine biogeographic structure
3. Berschauer D.P.&Clark R.N.(2018)Sea shells of southern California: Marine shells of the Californian province.San Diego The San Diego Shell Club 131pp.
4. Bertsch H.&Aguilar Rosas L.E.(2016)Invertebrados marinos del noroeste de México (Marine invertebrates of northwest Mexico). Universidad Autónoma de Baja California. Mexico: Ensenada 432pp.