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Solar noble gases in an iron meteorite indicate terrestrial mantle signatures derive from Earth's core

Earth Sciences

Solar noble gases in an iron meteorite indicate terrestrial mantle signatures derive from Earth's core

M. Vogt, M. Trieloff, et al.

Explore the intriguing findings from the study conducted by Manfred Vogt, Mario Trieloff, Ulrich Ott, Jens Hopp, and Winfried H. Schwarz, which reveals that the Washington County iron meteorite contains excessive amounts of solar helium and neon. This research sheds light on the potential solar origins of noble gases in Earth's core and its implications for our understanding of the mantle's composition.... show more
Abstract
Noble gases are important tracers of planetary accretion and acquisition of volatiles to planetary atmospheres and interiors. Earth's mantle hosts solar-type helium and neon for which 20Ne/22Ne ratios advocate either incorporation of solar wind irradiated solids or solar nebula gas dissolution into an early magma ocean. However, the exact source location of primordial signatures remains unclear. Here we use high-resolution stepwise heating gas extraction experiments to analyse interior samples of the iron meteorite Washington County and find that they contain striking excesses of solar helium and neon. We infer that the Washington County protolith was irradiated by solar wind and that implanted noble gases were partitioned into segregating metal melts. The corollary that solar signatures are able to enter the cores of differentiated planetesimals and protoplanets validates hypotheses that Earth's core may have incorporated solar noble gases and may be contributing to the solar signatures observed in Earth's mantle.
Publisher
Communications Earth & Environment
Published On
May 14, 2021
Authors
Manfred Vogt, Mario Trieloff, Ulrich Ott, Jens Hopp, Winfried H. Schwarz
Tags
Earth's mantle
solar helium
neon
Washington County iron meteorite
noble gases
core
solar wind
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