Volume 43 Issue 8
Aug.  2024
Turn off MathJax
Article Contents
Yongtao Fu, Guoliang Zhang, Wanyin Wang, An Yang, Tao He, Zhangguo Zhou, Xiao Han. Identification of the Caroline Plate boundary: constraints from magnetic anomaly[J]. Acta Oceanologica Sinica, 2024, 43(8): 1-12. doi: 10.1007/s13131-023-2272-9
Citation: Yongtao Fu, Guoliang Zhang, Wanyin Wang, An Yang, Tao He, Zhangguo Zhou, Xiao Han. Identification of the Caroline Plate boundary: constraints from magnetic anomaly[J]. Acta Oceanologica Sinica, 2024, 43(8): 1-12. doi: 10.1007/s13131-023-2272-9

Identification of the Caroline Plate boundary: constraints from magnetic anomaly

doi: 10.1007/s13131-023-2272-9
Funds:  The Open Fund of the Key Laboratory of Marine Geology and Environment, Chinese Academy of Sciences, under contract No. MGE2022KG11.
More Information
  • The Caroline Plate is located among the Pacific Plate, the Philippine Sea Plate, and the India Australia Plate, and plays a key role in controlling the spreading direction of the Philippine Sea Plate. The Caroline Submarine Plateau (or Caroline Ridge) and the Eauripik Rise on the south formed a remarkable T-shaped large igneous rock province, which covered the northern boundary between the Caroline Plate and the Pacific Plate. However, relationship between these tectonic units and magma evolution remains unclear. Based on magnetic data from the Earth Magnetic Anomaly Grid (2-arc-minute resolution) (V2), the normalized vertical derivative of the total horizontal derivative (NVDR-THDR) technique was used to study the boundary of the Caroline Plate. Results show that the northern boundary is a transform fault that runs 1400 km long in approximately 28 km wide along the N8° in E-W direction. The eastern boundary is an NNW-SSE trending fault zone and subduction zone with a width of tens to hundreds of kilometers; and the north of N4° is a fracture zone of dense faults. The southeastern boundary may be the Lyra Trough. The area between the southwestern part of the Caroline Plate and the Ayu Trough is occupied by a wide shear zone up to 100 km wide in nearly S-N trending in general. The Eauripik transform fault (ETF) in the center of the Caroline Plate and the fault zones in the east and west basins are mostly semi-parallel sinistral NNW-SSE–trending faults, which together with the eastern boundary Mussau Trench (MT) sinistral fault, the northern Caroline transform fault (CTF), and the southern shear zone of the western boundary, indicates the sinistral characteristics of the Caroline Plate. The Caroline hotspot erupted in the Pacific Plate near the CTF and formed the west Caroline Ridge, and then joined with the Caroline transform fault at the N8°. A large amount of magma erupted along the CTF, by which the east Caroline Ridge was formed. At the same time, a large amount of magma developed southward via the eastern branch of the ETF, forming the northern segment of the Eauripik Rise. Therefore, the magmatic activity of the T-shaped large igneous province is obviously related to the fault structure of the boundary faults between the Caroline Plate and Pacific Plate, and the active faults within the Caroline Plate.
  • loading
  • Austria R S P, Parcutela N E, Reyes E M L, et al. 2022. Magnetic field characterization of Macolod Corridor (Luzon, Philippines): New perspectives on rifting in a volcanic arc setting. Tectonophysics, 822: 229179, doi: 10.1016/j.tecto.2021.229179
    Bird P. 2003. An updated digital model of plate boundaries. Geochemistry, Geophysics, Geosystems, 4(3): 1027
    Bracey D R. 1983. Geophysics and tectonic development of the Caroline basin. Bay St. Louis: US Naval Oceanographic Office.
    Campbell I H. 2007. Testing the plume theory. Chemical Geology, 241(3-4): 153–176, doi: 10.1016/j.chemgeo.2007.01.024
    Campbell I H, Griffiths R W, Hill R I. 1989. Melting in an Archaean mantle plume: heads it's basalts, tails it's komatiites. Nature, 339(6227): 697–699, doi: 10.1038/339697a0
    Coffin M F, Eldholm O. 1994. Large igneous provinces: crustal structure, dimensions, and external consequences. Reviews of Geophysics, 32(1): 1–36, doi: 10.1029/93RG02508
    Conrad C P, Bianco T A, Smith E I, et al. 2011. Patterns of intraplate volcanism controlled by asthenospheric shear. Nature Geoscience, 4(5): 317–321, doi: 10.1038/ngeo1111
    Den N, Ludwig W J, Murauchi S, et al. 1971. Sediments and structure of the Eauripik-New Guinea Rise. Journal of Geophysical Research, 76(20): 4711–4723, doi: 10.1029/JB076i020p04711
    Deschamps A, Lallemand S. 2002. The West Philippine Basin: An Eocene to early Oligocene back arc basin opened between two opposed subduction zones. Journal of Geophysical Research: Solid Earth, 107(B12): EPM1 1-1–EPM1 1-24
    Dietmar Müller R, Sdrolias M, Gaina C, et al. 2008. Age, spreading rates, and spreading asymmetry of the world's ocean crust. Geochemistry, Geophysics, Geosystems, 9(4): Q04006
    Dong Dongdong, Zhang Zhengyi, Bai Yongliang, et al. 2018. Topographic and sedimentary features in the Yap subduction zone and their implications for the Caroline Ridge subduction. Tectonophysics, 722: 410–421, doi: 10.1016/j.tecto.2017.11.030
    Duncan R A, Richards M A. 1991. Hotspots, mantle plumes, flood basalts, and true polar wander. Reviews of Geophysics, 29(1): 31–50, doi: 10.1029/90RG02372
    Fan Jianke, Zheng Hong, Zhao Dapeng, et al. 2022. Seismic structure of the Caroline plateau-yap trench collision zone. Geophysical Research Letters, 49(6): e2022GL098017, doi: 10.1029/2022GL098017
    Fornari D J, Weissel J K, Perfit M R, et al. 1979. Petrochemistry of the Sorol and Ayu Troughs: implications for crustal accretion at the northern and western boundaries of the Caroline Plate. Earth and Planetary Science Letters, 45(1): 1–15, doi: 10.1016/0012-821X(79)90102-X
    Fujiwara T, Tamaki K, Fujimoto H, et al. 1995. Morphological studies of the Ayu Trough, Philippine Sea-Caroline Plate boundary. Geophysical Research Letters, 22(2): 109–112, doi: 10.1029/94GL02719
    Fujiwara T, Tamura C, Nishizawa A, et al. 2000. Morphology and tectonics of the Yap Trench. Marine Geophysical Researches, 21(1-2): 69–86
    Gaina C, Müller D. 2007. Cenozoic tectonic and depth/age evolution of the Indonesian gateway and associated back-arc basins. Earth-Science Reviews, 83(3-4): 177–203, doi: 10.1016/j.earscirev.2007.04.004
    Godfrey Fitton J, Godard M. 2004. Origin and evolution of magmas on the Ontong Java Plateau. Origin and Evolution of the Ontong Java Plateau, 229(1): 151–178
    Hall R. 2002. Cenozoic geological and plate tectonic evolution of SE Asia and the SW Pacific: computer-based reconstructions, model and animations. Journal of Asian Earth Sciences, 20(4): 353–431, doi: 10.1016/S1367-9120(01)00069-4
    Hall R, Fuller M, Ali J R, et al. 1995. The Philippine Sea Plate: magnetism and reconstructions. In: Taylor B, Natland J, eds. Active Margins and Marginal Basins of the Western Pacific. Washington: American Geophysical Union, 371–404
    He Tao, Xiong Shengqing, Wang Wanyin. 2022. Three-dimensional transformation of magnetization direction and magnetic field component at low latitudes based on vertical relationship. Applied Geophysics, 19(1): 91–106, doi: 10.1007/s11770-022-0928-4
    Heezen B C, Gray C, Segre A G, et al. 1971. Evidence of foundered continental crust beneath the central Tyrrhenian Sea. Nature, 229(5283): 327–329, doi: 10.1038/229327a0
    Hegarty K A, Weissel J K. 1988. Complexities in the development of the Caroline Plate region, western equatorial Pacific. In: Nairn A E M, Stehli F G, Uyeda S, eds. The Ocean Basins and Margins. Boston: Springer, 277–301
    Hegarty K A, Weissel J K, Hayes D E. 1983. Convergence at the Caroline-Pacific plate boundary: collision and subduction. In: Hayes D E, ed. The Tectonic and Geologic Evolution of Southeast Asian Seas and Islands: Part 2. Washington: American Geophysical Union, 27: 326–348
    Hill K C, Hall R. 2002. Mesozoic-Cainozoic evolution of Australia’s New Guinea margin in a West Pacific context. Defining Australia: the Australian Plate as Part of Planet Earth: Geological Society of America and Geological Society of Australia, joint publication, special paper, 1-43
    Hill K C, Hegarty K A. 1988. Tectonic interactions between New Guinea and the Caroline Plate-Implications for backarc spreading, achievements in Australian geosciences. In: 9th Australian Geological Convention. Brisbane: Geological Society of Australia, 192–193
    Hong J K, Lee S M. 2002. Reflection seismology in the southern Ayu Trough, a slow-spreading divergent boundary. Ocean and Polar Research, 24(3): 189–196, doi: 10.4217/OPR.2002.24.3.189
    Ian Ridley W, Rhodes J M, Reid A M, et al. 1974. Basalts from leg 6 of the deep-sea drilling project. Journal of Petrology, 15(1): 140–159, doi: 10.1093/petrology/15.1.140
    Jackson M G, Shirey S B, Hauri E H, et al. 2016. Peridotite xenoliths from the Polynesian Austral and Samoa hotspots: Implications for the destruction of ancient 187Os and 142Nd isotopic domains and the preservation of Hadean 129Xe in the modern convecting mantle. Geochimica et Cosmochimica Acta, 185: 21–43, doi: 10.1016/j.gca.2016.02.011
    Karig D E. 1975. Basin genesis in the Philippine Sea. Initial reports of the deep sea drilling project 31, 857-879.
    Keating B H, Mattey D P, Helsley C E, et al. 1984. Evidence for a hot spot origin of the Caroline Islands. Journal of Geophysical Research: Solid Earth, 89(B12): 9937–9948, doi: 10.1029/JB089iB12p09937
    Kim Y M, Lee S M, Okino K. 2009. Comparison of gravity anomaly between mature and immature intra-oceanic subduction zones in the western Pacific. Tectonophysics, 474(3-4): 657–673, doi: 10.1016/j.tecto.2009.05.004
    Kobayashi K. 2004. Origin of the Palau and Yap trench-arc systems. Geophysical Journal International, 157(3): 1303–1315, doi: 10.1111/j.1365-246X.2003.02244.x
    Koppers A A P, Staudigel H, Pringle M S, et al. 2003. Short-lived and discontinuous intraplate volcanism in the South Pacific: Hot spots or extensional volcanism?. Geochem. Geophys. Geosyst. , 4(10), 1089.https://doi.org/10.1029/2003GC000533.
    Kotake Y. 2000. Study of the tectonics of Western Pacific region derived from GPS data analysis. Bulletin of the Earthquake Research Institute, University of Tokyo, 75: 229–334
    Lee S M. 2004. Deformation from the convergence of oceanic lithosphere into Yap trench and its implications for early-stage subduction. Journal of Geodynamics, 37(1): 83–102, doi: 10.1016/j.jog.2003.10.003
    Lee J I, Hur S D, Park B K, et al. 2001. Geochemistry and K-Ar age of alkali basalts from Weno Island, Caroline Islands, Western Pacific. Ocean and Polar Research, 23(1): 23–34
    Lee S M, Kim S S. 2004. Vector magnetic analysis within the southern Ayu Trough, equatorial western Pacific. Geophysical Journal International, 156(2): 213–221, doi: 10.1111/j.1365-246X.2003.02125.x
    Li Chunfeng, Wang Jian. 2016. Variations in Moho and Curie Depths and Heat Flow in Eastern and Southeastern Asia. Marine Geophysical Research, 37(1): 1–20, doi: 10.1007/s11001-016-9265-4
    Li Chunfeng, Zhou Duo, Li Gang, et al. 2021. Geodynamic problems in the Western Pacific and future scientific drill targets. Earth Science (in Chinese), 46(3): 759–769
    Li Sanzhong, Cao Xianzhi, Wang Guangzeng, et al. 2019. Meso-Cenozoic tectonic evolution and plate reconstruction of the Pacific Plate. Journal of Geomechanics (in Chinese), 25(5): 642–677
    Liu Fen, Wang Wanyin, Ji Xiaolin. 2019. Influence factors and stability analysis of plane potential field continuation in space and frequency domains. Geophysical and Geochemical Exploration (in Chinese), 43(2): 320–328
    Luo Xingang, Wang Wanyin, Zhang Gongcheng, et al. 2018. Study on distribution features of faults based on gravity data in the South China Sea and its adjacent areas. Chinese Journal of Geophysics (in Chinese), 61(10): 4255–4268
    Ma Jie, Wang Wanyin, Du Xiangdong, et al. 2021. Study on system of faults in the gulf of Mexico and adjacent region based on gravity data. Acta Geologica Sinica-English Edition, 95(1): 305–318, doi: 10.1111/1755-6724.14643
    MacLeod S J, Williams S E, Matthews K J, et al. 2017. A global review and digital database of large-scale extinct spreading centers. Geosphere, 13(3): GES01379.1
    Macpherson C G, Hall R. 2001. Tectonic setting of Eocene boninite magmatism in the Izu-Bonin-Mariana forearc. Earth and Planetary Science Letters, 186(2): 215–230, doi: 10.1016/S0012-821X(01)00248-5
    Mattey D P. 1982. The minor and trace element geochemistry of volcanic rocks from Truk, Ponape and Kusaie, eastern Caroline Islands; the evolution of a young hot spot trace across old Pacific Ocean crust. Contributions to Mineralogy and Petrology, 80(1): 1–13, doi: 10.1007/BF00376730
    Maus S, Barckhausen U, Berkenbosch H, et al. 2009. EMAG2: A 2–arc min resolution Earth Magnetic Anomaly Grid compiled from satellite, airborne, and marine magnetic measurements. Geochemistry, Geophysics, Geosystems, 10(8): Q08005
    Meyer B, Saltus R, Chulliat A. 2017. EMAG2: Earth magnetic anomaly grid (2-arc-minute resolution) version 3. Washington: National Centers for Environmental Information, NOAA.
    Mrozowski C L, Lewis S D, Hayes D E. 1982. Complexities in the tectonic evolution of the west Philippine Basin. Tectonophysics, 82(1-2): 1–24, doi: 10.1016/0040-1951(82)90085-3
    Nagihara S, Kinoshita M, Fujimoto H, et al. 1989. Geophysical observations around the northern Yap Trench: Seismicity, Gravity and Heat flow. Tectonophysics, 163(1-2): 93–104, doi: 10.1016/0040-1951(89)90120-0
    Perfit M R, Fornari D J. 1982. Mineralogy and geochemistry of volcanic and plutonic rocks from the boundaries of the Caroline Plate: Tectonic implications. Tectonophysics, 87(1-4): 279–313, doi: 10.1016/0040-1951(82)90230-X
    Richards M A, Duncan R A, Courtillot V E. 1989. Flood basalts and hot-spot tracks: plume heads and tails. Science, 246(4926): 103–107, doi: 10.1126/science.246.4926.103
    Richards M A, Jones D L, Duncan R A, et al. 1991. A mantle plume initiation model for the Wrangellia flood basalt and other oceanic plateaus. Science, 254(5029): 263–267, doi: 10.1126/science.254.5029.263
    Sager W W, Huang Yanming, Tominaga M, et al. 2019. Oceanic plateau formation by seafloor spreading implied by Tamu Massif magnetic anomalies. Nature Geoscience, 12(8): 661–666, doi: 10.1038/s41561-019-0390-y
    Sandwell D T, Harper H, Tozer B, et al. 2021. Gravity field recovery from geodetic altimeter missions. Advances in Space Research, 68(2): 1059–1072, doi: 10.1016/j.asr.2019.09.011
    Schellart W P, Stegman D R, Freeman J. 2008. Global trench migration velocities and slab migration induced upper mantle volume fluxes: Constraints to find an Earth reference frame based on minimizing viscous dissipation. Earth-Science Reviews, 88(1-2): 118–144, doi: 10.1016/j.earscirev.2008.01.005
    Seton M, Müller R D, Zahirovic S, et al. 2012. Global continental and ocean basin reconstructions since 200 Ma. Earth-Science Reviews, 113(3-4): 212–270, doi: 10.1016/j.earscirev.2012.03.002
    Taylor B. 2006. The single largest oceanic plateau: Ontong Java-Manihiki-Hikurangi. Earth and Planetary Science Letters, 241(3-4): 372–380, doi: 10.1016/j.jpgl.2005.11.049
    Tejada M L G, Suzuki K, Hanyu T, et al. 2013. Cryptic lower crustal signature in the source of the Ontong Java Plateau revealed by Os and Hf isotopes. Earth and Planetary Science Letters, 377–378: 84–96
    Tuzo Wilson J. 1963. A possible origin of the Hawaiian Islands. Canadian Journal of Physics, 41(6): 863–870, doi: 10.1139/p63-094
    Utkin V P. 2006. Role of strike-slip faulting of the oceanic lithosphere in the formation of Pacific volcanic belts. Doklady Earth Sciences, 409(1): 692–296, doi: 10.1134/S1028334X06050023
    Wang Wanyin, Pan Yu, Qiu Zhiyun. 2009. A new edge recognition technology based on the normalized vertical derivative of the total horizontal derivative for potential field data. Applied Geophysics, 6(3): 226–233, doi: 10.1007/s11770-009-0026-x
    Weissel J K, Anderson R N. 1978. Is there a Caroline plate? Earth and Planetary Science Letters, 41(2): 143–158
    Whittaker J M, Afonso J C, Masterton S, et al. 2015. Long-term interaction between mid-ocean ridges and mantle plumes. Nature Geoscience, 8(6): 479–483, doi: 10.1038/ngeo2437
    Wu J, Suppe J, Lu Renqi, et al. 2016. Philippine Sea and East Asian plate tectonics since 52 Ma constrained by new subducted slab reconstruction methods. Journal of Geophysical Research: Solid Earth, 121(6): 4670–4741, doi: 10.1002/2016JB012923
    Yan Shishuai, Yan Quanshu, Shi Xuefa, et al. 2022. The dynamics of the Sorol Trough magmatic system: Insights from bulk-rock chemistry and mineral geochemistry of basaltic rocks. Geological Journal, 57(10): 4074–4089, doi: 10.1002/gj.4529
    Yang An, Fu Yongtao. 2018. Estimates of effective elastic thickness at subduction zones. Journal of Geodynamics, 117: 75–87, doi: 10.1016/j.jog.2018.04.007
    Zhang Zhengyi, Dong Dongdong, Sun Weidong, et al. 2021. The Caroline Ridge fault system and implications for the bending-related faulting of incoming oceanic plateaus. Gondwana Research, 92: 133–148, doi: 10.1016/j.gr.2020.11.018
    Zhang Zhen, Li Sanzhong, Wang Guangzeng, et al. 2022. Plate boundary processes of the Caroline Plate. Science China Earth Sciences, 65(8): 1554–1567, doi: 10.1007/s11430-021-9919-6
    Zhang Guoliang, Yao Junhua, Xu Feng, et al. 2023. Origin of the Mussau Trench in the Western Pacific: Geochemical and mineralogical constraints from basalts and serpentinized peridotites. Chemical Geology, 642: 121798, doi: 10.1016/j.chemgeo.2023.121798
    Zhang Guoliang, Zhang Ji, Wang Shuai, et al. 2020. Geochemical and chronological constraints on the mantle plume origin of the Caroline Plateau. Chemical Geology, 540: 119566, doi: 10.1016/j.chemgeo.2020.119566
    Zhu Yingjie, Wang Wanyin, Farquharson C G, et al. 2021. Normalized vertical derivatives in the edge enhancement of maximum-edge-recognition methods in potential fields. Geophysics, 86(4): G23–G34, doi: 10.1190/geo2020-0165.1
    Zhu Yingjie, Wang Wanyin, Kim Welford J, et al. 2022. Structural features in the mid-latitude Western Pacific based on gravity and magnetic anomalies. Chinese Journal of Geophysics (in Chinese), 65(5): 1712–1731
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Figures(5)

    Article Metrics

    Article views (282) PDF downloads(51) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return