Primordial and recycled helium isotope signatures in the mantle transition zone.

Timmerman, S; Honda, M; Burnham, A D; Amelin, Y; Woodland, S; Pearson, D G; Jaques, A L; Le Losq, C et al. · Science · 2019

basic_science · Level V

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Abstract

Isotope compositions of basalts provide information about the chemical reservoirs in Earth's interior and play a critical role in defining models of Earth's structure. However, the helium isotope signature of the mantle below depths of a few hundred kilometers has been difficult to measure directly. This information is a vital baseline for understanding helium isotopes in erupted basalts. We measured He-Sr-Pb isotope ratios in superdeep diamond fluid inclusions from the transition zone (depth of 410 to 660 kilometers) unaffected by degassing and shallow crustal contamination. We found extreme He-C-Pb-Sr isotope variability, with high <sup>3</sup>He/<sup>4</sup>He ratios related to higher helium concentrations. This indicates that a less degassed, high-<sup>3</sup>He/<sup>4</sup>He deep mantle source infiltrates the transition zone, where it interacts with recycled material, creating the diverse compositions recorded in ocean island basalts.