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A 32-million year cycle detected in sea-level fluctuations over the last 545 Myr

查看全文 作  者:Michael [1,2]R.Rampino;Ken [3]Caldeira 高影响力作者 机构地区:[1]Departments of Biology and Environmental Studies,New York University,100 Washington Square East,New York,NY,10003,USA;[2]NASA,Goddard Institute for Space Studies,2880 Broadway,New York,NY,10025,USA;[3]Department of Global Ecology,Carnegie Institution for Science,290 Panama Street,Stanford,CA,94305,USA高影响力机构 出  处:《Geoscience Frontiers》索引2020年第11卷第6期,共5页高影响力期刊 基  金:partially funded by an NYU Research Challenge Grant。 摘  要:Spectral analyses of past relative sea-level oscillations as represented by the ages of 57 Phanerozoic(the last 545 Myr)stratigraphic sequence boundaries from the Canadian Arctic show a strong spectral peak at 32 Myr(>99.9%confidence).These findings concur with previous reports of significant cycles with periods of around 30 Myr in various records of fluctuations of sea level,and in potentially related episodes of tectonism,volcanism,climate,and biotic extinctions.Sequence boundaries commonly coincide with stage boundaries based on biostratigraphy,and are correlated with episodes of extinction and times of flood-basalt volcanism.The connection between tectonics and sea-level variations may come from changes in rates of ocean-floor spreading and subduction,intraplate stresses from plate-reorganizations,and pulsations of hotspot volcanism.These coordinated periodic fluctuations in tectonics,sea level and climate may be modulated by cyclical activity in the Earth’s mantle,although some pacing by astronomical cycles is suspected. 关 键 词:Sea level PERIODICITY Sequence boundary
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