4.3 Article

The Fine Gold Intrusive Suite: The roles of basement terranes and magma source development in the Early Cretaceous Sierra Nevada batholith

期刊

GEOSPHERE
卷 8, 期 2, 页码 292-313

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GEOLOGICAL SOC AMER, INC
DOI: 10.1130/GES00745.1

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资金

  1. National Science Foundation (NSF) [EAR-0732436, EAR-0929777, EAR-0929746, EAR-CAREER 0805972, DUE-CCLI 0942447, EAR-0948706]
  2. Pomona College
  3. Directorate For Geosciences
  4. Division Of Earth Sciences [1032156, 0948706] Funding Source: National Science Foundation
  5. Division Of Undergraduate Education
  6. Direct For Education and Human Resources [0942447] Funding Source: National Science Foundation

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The Fine Gold Intrusive Suite is one of the largest (>2000 km(2)) and oldest intrusive complexes in the Sierra Nevada batholith (California, USA), and therefore contains a wealth of information about nascent magmatic processes in a convergent margin arc. Because the suite intrudes both accreted oceanic and/or island-arc terranes and continental crust, it provides perspective on how convergent margin magmatism recycles existing crust versus reworking of fringing island arcs into continental crust. Such insight informs our understanding of how continental crust formation may have operated in the Phanerozoic as compared to earlier in Earth history. New zircon U-Pb geochronology shows that the largely tonalitic suite was emplaced over similar to 19 m.y. (124-105 Ma), in three pulses that young from west to east. The most recent domain is nested within the previous ones, such that lobes of magma protruding from the main bodies of the Bass Lake Tonalite (the primary member of the Fine Gold Intrusive Suite) are older than interior areas. Zircon delta O-18 (6.1 parts per thousand-8.0 parts per thousand) and epsilon Hf (-4.7 + 6.4) show temporal trends indicating that early magmas were source mixtures of mantle with as much as 45% Paleozoic to Mesozoic oceanic and/or arc rocks, whereas later magmas contain greater inputs (to 50%) of Proterozoic North American crust. Older domains in the suite were likely generated from isolated sources, including initial high Sr/Y (to similar to 90), high Na2O magmas consistent with garnet-bearing sources inferred to be relatively deep. Higher Sr-87/Sr-86, lower epsilon Hf, and higher Rb/Sr values in younger plutons show a source that tapped greater proportions of North American crust and was presumably more organized and larger, given its more homogeneous isotopic and trace element traits. Our findings also show that expression of the Sr-87/Sr-86 = 0.706 isopleth in arc magmas may be delayed until magma sources are sufficiently vigorous to melt and incorporate aged continental crust. Therefore, Sr-i values of older stitching plutons may better record the position of discrete terrane boundaries, whereas younger plutons will record the magmatically average position of terrane boundaries. Although the Fine Gold Intrusive Suite is comparable to the Late Cretaceous voluminous intrusive suite of eastern Sierran suites in terms of duration and age zoning of magmatism, the influence of preexisting basement compositions and differing degrees of organization of the magma sources with age is more pronounced. In addition, the findings show that recycling of fringing arc terranes into continental crust is relatively rapid and that estimates of the growth of Phanerozoic continental crust from such reprocessing should be revised upward.

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