The Potential of Marine Ferromanganese Nodules From Eastern Pacific as Recorders of Earth's Magnetic Field Changes During the Past 4.7 Myr: A Geochronological Study by Magnetic Scanning and Authigenic <sup>10</sup>Be/<sup>9</sup>Be Dating
Liang Yi(Tongji University), Rixiang Zhu(Chinese Academy of Sciences), G. Kletetschka(Goddard Space Flight Center), Thomas Smith(Chinese Academy of Sciences), Greig A. Paterson(University of Liverpool), Huaiyu He(Chinese Academy of Sciences), Karim Keddadouche(Centre National de la Recherche Scientifique), Quentin Simon(Centre National de la Recherche Scientifique), Y. Chen(Second Institute of Oceanography), Junyi Du(University of Science and Technology of China), C. Andreucci(Centre National de la Recherche Scientifique), Martín Medina‐Elizalde(University of Massachusetts Amherst), Zhongshan Shen(Chinese Academy of Sciences), Qiang Xie(Wuhan Municipal Engineering Design & Research Institute), Zhimin Jian(Tongji University), Chenglong Deng(Chinese Academy of Sciences), Didier Bourlès(Centre National de la Recherche Scientifique), Huiqiang Yao(Ministry of Natural Resources), Huan Wang(Ministry of Natural Resources), Y. Wang(Tongji University), Xiang Gu(Chinese Academy of Sciences), Xiguang Deng(China Geological Survey), Tao Song(Shenyang Aerospace University), Huafeng Qin(Chinese Academy of Sciences), Haowen Dang(Tongji University), G. Aumaître(Centre National de la Recherche Scientifique), Y. Liu(Ministry of Natural Resources)
Cited by 28
Related Papers
Tectonic implications of Mars crustal magnetism
|Proceedings of the National Academy of Sciences|2005|322
Uplift, climate and biotic changes at the Eocene–Oligocene transition in south-eastern Tibet
|National Science Review|2018|295
Interpreting and reporting 40Ar/39Ar geochronologic data
|Geological Society of America Bulletin|2020|285
The global magnetic field of Mars and implications for crustal evolution
|Geophysical Research Letters|2001|282