Astrochronostratigraphic polarity time scale (APTS) for the Late Triassic and Early Jurassic from continental sediments and correlation with standard marine stages

被引:123
|
作者
Kent, Dennis V. [1 ,2 ]
Olsen, Paul E. [2 ]
Muttoni, Giovanni [3 ]
机构
[1] Rutgers State Univ, Earth & Planetary Sci, Piscataway, NJ 08854 USA
[2] Columbia Univ, Lamont Doherty Earth Observ, Palisades, NY 10964 USA
[3] Univ Milan, Dipartimento Sci Terra Ardito Desio, Via Mangiagalli 34, I-20133 Milan, Italy
基金
美国国家科学基金会;
关键词
ATLANTIC MAGMATIC PROVINCE; NORTHERN CALCAREOUS ALPS; GLOBAL STRATOTYPE SECTION; MASS-EXTINCTION EVENT; EOLIAN DUNE FIELD; ST-AUDRIES BAY; RIFT BASIN; CALIBRATED MAGNETOSTRATIGRAPHY; PALEOMAGNETIC CORRELATION; MAGNETIC STRATIGRAPHY;
D O I
10.1016/j.earscirev.2016.12.014
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Paleomagnetic and cycle tratigraphic analyses of nearly 7000 m of section from continuous cores in the Newark basin and an overlapping 2500 meter-thick composite outcrop and core section in the nearby Hartford basin provide an astrochronostratigraphic polarity time-scale (APTS) for practically the entire Late Triassic (Carnian, Norian and Rhaetian) and the Hettangian and early Sinemurian stages of the Early Jurassic (233 to 199 Ma in toto). Aperiodic magnetic polarity reversals make a distinctive pattern of normal and reverse chrons for correlation, ideally paced by the periodic timing of orbital climate cycles, and anchored to million years ago (Ma) by high-precision U-Pb zircon dates from stratigraphically-constrained basalts of the Central Atlantic Magmatic Province (CAMP). Pinned by the CAMP dates, the Newark-Hartford APTS is calibrated by sixty-six McLaughlin cycles, each a reflection of climate forcing by the long astronomical eccentricity variation with the stable 405 kyr period, from 199.5 to 225.8 Ma and encompassing fifty-one magnetic polarity intervals, making it one of the longest continuous astrochronostratigraphic polarity time-scales available in the Mesozoic and Cenozoic. Extrapolation of sediment accumulation rates in fluvial sediments in the basal Newark section extends the sequence an additional fifteen polarity intervals to 232.7 Ma. The lengths of the 66 polarity chrons vary from 0.011 Myr (Chron E23r) to 1.63 Myr (Chron H24n) with an overall mean duration of 0.53 Myr. The oldest CAMP basalts provide a zircon U-Pb-based estimated age of 201.5 Ma for the base of the stratigraphically superjacent McLaughlin cycle 61 and 201.6 Ma using cycle stratigraphy for the onset of the immediately subjacent Chron E23r. The calibration age of 201.5 Ma for the base of McLaughlin cycle 61 is remarkably consistent with the calculated phase of the 498th long eccentricity cycle counting back using a period of 405 kyr from the most recent peak at 0.216 Ma. Accordingly, we suggest a nomenclature (Ecc405:k, where k is the cycle number or fraction thereof) to unambiguously assign ages from the astrochronostratigraphy. Magnetostratigraphic correlation of key Tethyan sections with diagnostic marine biostratigraphic elements to the Newark-Hartford APTS allows determination of numerical ages of standard marine stages, as follows: 227 Ma for the Carnian/Norian boundary, 205.5 Ma for the Norian/ Rhaetian boundary (using a chemostratigraphic criterion, or about 4 Myr older for alternative criteria), 201.4 Ma for the Triassic/Jurassic boundary, and 199.5 Ma for the Hettangian/Sinemurian boundary. These age estimates are in excellent agreement with available constraints from high-precision U-Pb zircon dating from the Pucara Basin of Peru and along with the presence of the short Chron E23r in several basins argue strongly against suggestions that millions of years of Rhaetian time is missing in a cryptic hiatus or unconformity that supposedly occurs just above Chron E23r in the Newark Supergroup basins. It is more parsimonious to explain the apparent temporal delays in appearances and disappearances of palynoflora, conchostracans, and other endemic taxa in continental deposits as a reflection of demonstrated continental drift across climate belts and the misinterpretation of ecostratigraphy as chronostratigraphy. The Newark-Hartford APTS provides a chronostratigraphic template for continuing efforts at correlation of Late Triassic and Early Jurassic continental and marine sections throughout the world, including integration with atmospheric pCO(2) measurements from paleosol carbonates and carbon isotopic measurements from marine carbonates to better understand the global carbon cycle as well as understanding the causes of and recovery from the end-Triassic mass extinction. (C) 2017 Elsevier B.V. All rights reserved.
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页码:153 / 180
页数:28
相关论文
共 12 条
  • [1] A MAGNETIC POLARITY TIME SCALE FOR THE EARLY CRETACEOUS AND LATE JURASSIC
    LOWRIE, W
    OGG, JG
    [J]. EARTH AND PLANETARY SCIENCE LETTERS, 1986, 76 (3-4) : 341 - 349
  • [2] Tethyan magnetostratigraphy from Pizzo Mondello (Sicily) and correlation to the Late Triassic Newark astrochronological polarity time scale
    Muttoni, G
    Kent, DV
    Olsen, PE
    Di Stefano, P
    Lowrie, W
    Bernasconi, SM
    Hernández, FM
    [J]. GEOLOGICAL SOCIETY OF AMERICA BULLETIN, 2004, 116 (9-10) : 1043 - 1058
  • [3] Systematic revision of Late Triassic marine gastropods from Central Peru: considerations on the Late Triassic/Early Jurassic faunal turnover
    Mariel Ferrari, S.
    [J]. ANDEAN GEOLOGY, 2015, 42 (01): : 71 - 96
  • [4] THE LATE PERMIAN EARLY TRIASSIC MAGNETIC POLARITY TIME SCALE AND PLATE MOTIONS OF SOUTH CHINA
    STEINER, M
    OGG, J
    ZHANG, Z
    SUN, S
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1989, 94 (B6): : 7343 - 7363
  • [5] A New Middle to Late Jurassic Geomagnetic Polarity Time Scale (GPTS) From a Multiscale Marine Magnetic Anomaly Survey of the Pacific Jurassic Quiet Zone
    Tominaga, Masako
    Tivey, Maurice A.
    Sager, William W.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2021, 126 (03)
  • [6] Improving the Upper Triassic numerical time scale from cross-correlation between Tethyan marine sections and the continental Newark basin sequence
    Gallet, Y
    Krystyn, L
    Besse, J
    Marcoux, J
    [J]. EARTH AND PLANETARY SCIENCE LETTERS, 2003, 212 (3-4) : 255 - 261
  • [7] Provenance of the first terrigenous sediments in the western Sichuan Basin during the Late Triassic: Implications for basin evolution from marine to continental
    Lu, Gang
    Chen, Xinwei
    Zou, Hao
    Preto, Nereo
    Huang, Xiangtong
    Wang, Changcheng
    Shi, Zhiqiang
    Jin, Xin
    [J]. MARINE AND PETROLEUM GEOLOGY, 2023, 147
  • [8] Long-period Milankovitch cycles from the Late Triassic and Early Jurassic of eastern North America and their implications for the calibration of the Early Mesozoic time-scale and the long-term behaviour of the planets
    Olsen, PE
    Kent, DV
    [J]. PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 1999, 357 (1757): : 1761 - 1786
  • [9] EARLY TRIASSIC MAGNETIC POLARITY TIME SCALE INTEGRATION OF MAGNETOSTRATIGRAPHY, AMMONITE ZONATION AND SEQUENCE STRATIGRAPHY FROM STRATOTYPE SECTIONS (CANADIAN ARCTIC ARCHIPELAGO)
    OGG, JG
    STEINER, MB
    [J]. EARTH AND PLANETARY SCIENCE LETTERS, 1991, 107 (01) : 69 - 89
  • [10] A nonmarine record of eccentricity forcing through the Upper Triassic of southwest England and its correlation with the Newark Basin astronomically calibrated geomagnetic polarity time scale from North America
    Kemp, David B.
    Coe, Angela L.
    [J]. GEOLOGY, 2007, 35 (11) : 991 - 994