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Science 23 February 1996:
Vol. 271. no. 5252, pp. 1092 - 1095
DOI: 10.1126/science.271.5252.1092

Reports

Drilling and Dating New Jersey Oligocene-Miocene Sequences: Ice Volume, Global Sea Level, and Exxon Records

Kenneth G. Miller, (1) Gregory S. Mountain , the Leg 150 Shipboard Party, Members of the New Jersey Coastal Plain Drilling Project

Oligocene to middle Miocene sequence boundaries on the New Jersey coastal plain (Ocean Drilling Project Leg 150X) and continental slope (Ocean Drilling Project Leg 150) were dated by integrating strontium isotopic stratigraphy, magnetostratigraphy, and biostratigraphy (planktonic foraminifera, nannofossils, dinocysts, and diatoms). The ages of coastal plain unconformities and slope seismic reflectors (unconformities or stratal breaks with no discernible hiatuses) match the ages of global delta 18O increases (inferred glacioeustatic lowerings) measured in deep-sea sites. These correlations confirm a causal link between coastal plain and slope sequence boundaries: both formed during global sea-level lowerings. The ages of New Jersey sequence boundaries and global delta 18O increases also correlate well with the Exxon Production Research sea-level records of Haq et al. and Vail et al., validating and refining their compilations.

K. G. Miller, Department of Geological Sciences, Rutgers University, Piscataway, NJ 08855, USA, and Lamont-Doherty Earth Observatory of Columbia University, Palisades, NY 10964, USA.
G. S. Mountain, Lamont-Doherty Earth Observatory of Columbia University, Palisades, NY 10964, USA.
The members of the Leg 150 shipboard party and the New Jersey Coastal Plain Drilling Project are listed .
(1) To whom correspondence should be addressed.



THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
Deep Drilling into the Chesapeake Bay Impact Structure.
G. S. Gohn, C. Koeberl, K. G. Miller, W. U. Reimold, J. V. Browning, C. S. Cockell, J. W. Horton Jr., T. Kenkmann, A. A. Kulpecz, D. S. Powars, et al. (2008)
Science 320, 1740-1745
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Eocene Oligocene global climate and sea-level changes: St. Stephens Quarry, Alabama.
K. G. Miller, J. V. Browning, M.-P. Aubry, B. S. Wade, M. E. Katz, A. A. Kulpecz, and J. D. Wright (2008)
Geological Society of America Bulletin 120, 34-53
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Inferring phenotypic evolution in the fossil record by Bayesian inversion.
B. Hannisdal (2007)
Paleobiology 33, 98-115
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Quantification of the effects of eustasy, subsidence, and sediment supply on Miocene sequences, mid-Atlantic margin of the United States.
J. V. Browning, K. G. Miller, P. P. McLaughlin, M. A. Kominz, P. J. Sugarman, D. Monteverde, M. D. Feigenson, and J. C. Hernandez (2006)
Geological Society of America Bulletin 118, 567-588
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Chemostratigraphy in Miocene heterozoan carbonate settings: applications, limitations and perspectives.
M. Mutti, C. M. John, and A. C. Knoerich (2006)
Geological Society, London, Special Publications 255, 307-322
   Abstract »    PDF »
The Miocene New Jersey Passive Margin as a Model for the Distribution of Sedimentary Organic Matter in Siliciclastic Deposits.
C. Pellaton and G. E. Gorin (2005)
Journal of Sedimentary Research 75, 1011-1027
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Glacioeustatic changes in the early and middle Eocene (51-42 Ma): Shallow-water stratigraphy from ODP Leg 189 Site 1171 (South Tasman Rise) and deep-sea {delta}18O records.
S. F. Pekar, A. Hucks, M. Fuller, and S. Li (2005)
Geological Society of America Bulletin 117, 1081-1093
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Relative Control of Paleoceanography, Climate, and Eustasy over Heterozoan Carbonates: A Perspective from Slope Sediments of the Marion Plateau (ODP LEG 194).
C. M. John and M. Mutti (2005)
Journal of Sedimentary Research 75, 216-230
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Controls on sequence stratigraphy of a middle Miocene-Holocene, current-swept, passive margin: Offshore Canterbury Basin, New Zealand.
H. Lu and C. S. Fulthorpe (2004)
Geological Society of America Bulletin 116, 1345-1366
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Mixed carbonate-siliciclastic record on the North African margin (Malta)--coupling of weathering processes and mid Miocene climate.
C. M. John, M. Mutti, and T. Adatte (2003)
Geological Society of America Bulletin 115, 217-229
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A New Geochemical-Sequence Stratigraphic Model for the Mahakam Delta and Makassar Slope, Kalimantan, Indonesia: Reply.
(2001)
AAPG Bulletin 85, 1102-1105
Oligocene eustasy from two-dimensional sequence stratigraphic backstripping.
M. A. Kominz and S. F. Pekar (2001)
Geological Society of America Bulletin 113, 291-304
   Abstract »    Full Text »    PDF »
Morphology and distribution of Miocene slope incisions off New Jersey: Are they diagnostic of sequence boundaries?.
C. S. Fulthorpe, J. A. Austin Jr., and G. S. Mountain (2000)
Geological Society of America Bulletin 112, 817-828
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