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      A contourite drift system on the Baffin Bay–West Greenland margin linking Pliocene Arctic warming to poleward ocean circulation

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          Trends, rhythms, and aberrations in global climate 65 Ma to present.

          Since 65 million years ago (Ma), Earth's climate has undergone a significant and complex evolution, the finer details of which are now coming to light through investigations of deep-sea sediment cores. This evolution includes gradual trends of warming and cooling driven by tectonic processes on time scales of 10(5) to 10(7) years, rhythmic or periodic cycles driven by orbital processes with 10(4)- to 10(6)-year cyclicity, and rare rapid aberrant shifts and extreme climate transients with durations of 10(3) to 10(5) years. Here, recent progress in defining the evolution of global climate over the Cenozoic Era is reviewed. We focus primarily on the periodic and anomalous components of variability over the early portion of this era, as constrained by the latest generation of deep-sea isotope records. We also consider how this improved perspective has led to the recognition of previously unforeseen mechanisms for altering climate.
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            High Earth-system climate sensitivity determined from Pliocene carbon dioxide concentrations

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              Alkenone and boron-based Pliocene pCO2 records

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                Author and article information

                Journal
                Geology
                Geology
                Geological Society of America
                0091-7613
                1943-2682
                September 14 2015
                October 28 2015
                : 43
                : 10
                : 907-910
                Article
                10.1130/G36927.1
                2f45f6c6-394b-4f0f-a0f5-b46caa2aca5d
                © 2015
                History

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