| Literature DB >> 30608845 |
Jurong Zhang1, Jian Lv1, Hefei Li1, Xiaolei Feng2,3, Cheng Lu4, Simon A T Redfern2,3, Hanyu Liu1, Changfeng Chen4, Yanming Ma1,5.
Abstract
There is compelling geochemical evidence for primordial helium trapped in Earth's lower mantle, but the origin and nature of the helium source remain elusive due to scarce knowledge on viable helium-bearing compounds that are extremely rare. Here we explore materials physics underlying this prominent challenge. Our structure searches in conjunction with first-principles energetic and thermodynamic calculations uncover a remarkable helium-bearing compound FeO_{2}He at high pressure-temperature conditions relevant to the core-mantle boundary. Calculated sound velocities consistent with seismic data validate FeO_{2}He as a feasible constituent in ultralow velocity zones at the lowermost mantle. These mutually corroborating findings establish the first and hitherto only helium-bearing compound viable at pertinent geophysical conditions, thus providing vital physics mechanisms and materials insights for elucidating the enigmatic helium reservoir in deep Earth.Entities:
Year: 2018 PMID: 30608845 DOI: 10.1103/PhysRevLett.121.255703
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161