Sill to surface: Linking young off-axis volcanism with subsurface melt at the overlapping spreading center at 9°03'N East Pacific Rise

dc.contributor.author

Waters, CL

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Sims, KWW

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Klein, Emily M

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White, SM

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Reagan, MK

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Girard, G

dc.date.accessioned

2014-01-26T15:18:45Z

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2013

dc.description.abstract

No young, off-axis, mid-ocean ridge lavas have yet been directly linked to underlying off-axis melt bodies. In this study, we present new measurements of 238U-230Th-226Ra-210Pb isotope compositions for a suite of lavas from the overlapping spreading center (OSC) at 9°03'N on the East Pacific Rise (EPR). These lavas span a large range of compositions, from basalt to dacite, and include both axial and off-axis samples recovered from a prominent, axis-parallel pillow ridge and a flat-topped seamount that overlie the westernmost extent of a 4-km-wide melt lens (Kent et al., 2000). We report 210Pb excesses in axial basalts and basaltic andesites, which we suggest results from gas-magma fractionation of 222Rn from 226Ra beneath dacite magmas. In addition, our U-series ages agree with visual observations, indicating that while most recent volcanic activity occurs at the spreading axis, active volcanism also occurs away from the axis. Specifically, the off-axis pillow ridge and seamount samples overlying the off-axis subsurface melt body have eruption ages of less than 8ka, and likely as young as 1ka, despite being located on crust that has a spreading age of ~75ka. The young ages of these lavas, combined with existing geological, geochemical and geophysical constraints, provide evidence for a genetic link between the pillow ridge and seamount lavas and the seismically imaged, underlying off-axis melt lens. This link demonstrates that off-axis volcanism does not necessarily come from a sub-axial magma body and can be sourced directly from off-axis magma bodies. © 2013 Elsevier B.V.

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0012-821X

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https://hdl.handle.net/10161/8324

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Earth and Planetary Science Letters

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10.1016/j.epsl.2013.03.006

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Sill to surface: Linking young off-axis volcanism with subsurface melt at the overlapping spreading center at 9°03'N East Pacific Rise

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Journal article

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59

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70

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Duke

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Earth and Ocean Sciences

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Nicholas School of the Environment

pubs.volume

369-370

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