Published March 15, 2021 | Version public
Journal Article

Primordial neon in high-³He/⁴He Baffin Island olivines

  • 1. ROR icon Woods Hole Oceanographic Institution
  • 2. ROR icon California Institute of Technology

Abstract

Paleocene basaltic lavas exposed on Baffin Island have the highest ³He/⁴He found in any terrestrial igneous rocks and potentially contain the most pristine primordial mantle material exposed on Earth's surface. By vacuum-crushing large (1–3 g) olivine mineral separates, we extracted enough magmatic gas to obtain the first coupled helium, neon, and argon isotopic compositions of Baffin Island lavas. The five Baffin Island olivine samples have ³He/⁴He ranging from 36.2 ± 0.6 to 48.6 ± 1.3 (1σ) times the atmospheric ratio (Ra), overlapping with the highest known mantle values. Neon isotopic results fall on a mixing line between atmosphere and a high ²⁰Ne/²²Ne mantle endmember (with a maximum ²⁰Ne/²²Ne of 12.2). The slope of this mixing line is indistinguishable from that in subglacial Holocene glass from Iceland, but distinct from other hotspots and mid-ocean ridge basalt trends. This result supports the hypothesis that Baffin Island and Iceland lavas share a common high-³He/⁴He mantle component, despite the fact that recent paleogeographic reconstructions place the Iceland hotspot far from Baffin Island at the time of eruption (61 Ma). Our results also demonstrate that high-³He/⁴He mantle reservoirs have ³He/²²Ne variability that either reflects ancient mantle heterogeneity or helium addition in the upper or lower mantle.

Additional Information

© 2021 Elsevier B.V. Received 7 October 2020, Revised 11 December 2020, Accepted 11 January 2021, Available online 25 January 2021. The National Science Foundation (award #1911699) funded this research. The Woods Hole Oceanographic Institution (WHOI) Andrew W. Mellon Foundation Endowed Fund for Innovative Research and a National Geographic Society grant (#CP4-144R-18) supported fieldwork activities. The WHOI noble gas lab was supported by NSF OCE #1259218 and WHOI. We thank Maryse Mahy of the Parks Canada Nunavut Field Unit, the Qikiqtani Inuit Association, and the Nunavut Research Institute for their assistance and cooperation. Victoria Hooton provided invaluable help with mineral separation. Two anonymous reviews improved the manuscript. CRediT authorship contribution statement: F. Horton: Conceptualization, Formal analysis, Funding acquisition, Methodology, Supervision, Visualization, Writing – original draft. J. Curtice: Formal analysis, Investigation. K.A. Farley: Conceptualization, Funding acquisition, Investigation, Methodology, Resources, Supervision. M.D. Kurz: Investigation, Resources, Writing – review & editing. P.D. Asimow: Conceptualization, Funding acquisition, Supervision, Writing – review & editing. J. Treffkorn: Formal analysis, Investigation, Writing – original draft. X.M. Boyes: Formal analysis, Investigation. The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Additional details

Additional titles

Alternative title
Primordial neon in high-3He/4He Baffin Island olivines

Identifiers

Eprint ID
108479
DOI
10.1016/j.epsl.2021.116762
Resolver ID
CaltechAUTHORS:20210318-103515860

Related works

Funding

NSF
EAR-1911699
Woods Hole Oceanographic Institution
Andrew W. Mellon Foundation
National Geographic Society
CP4-144R-18
NSF
OCE-1259218

Dates

Created
2021-03-19
Created from EPrint's datestamp field
Updated
2021-11-16
Created from EPrint's last_modified field

Caltech Custom Metadata