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Related papers: FeOOH instability at the lower mantle conditions

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Early Earth may have hosted a biologically-mediated global organic haze during the Archean eon (3.8-2.5 billion years ago). This haze would have significantly impacted multiple aspects of our planet, including its potential for habitability…

Earth and Planetary Astrophysics · Physics 2018-05-02 Giada N. Arney , Shawn D. Domagal-Goldman , Victoria S. Meadows

The origin of water on the Earth is a long-standing mystery, requiring a comprehensive search for hydrous compounds, stable at conditions of the deep Earth and made of Earth-abundant elements. Previous studies usually focused on the current…

Geophysics · Physics 2022-02-03 Han-Fei Li , Artem R. Oganov , Haixu Cui , Xiang-Feng Zhou , Xiao Dong , Hui-Tian Wang

Elemental abundances, particularly the C/O ratio, are seen as a way to connect the composition of planetary atmospheres with planet formation scenario and the disc chemical environment. We model the chemical composition of gas and ices in a…

Earth and Planetary Astrophysics · Physics 2025-01-15 Tamara Molyarova , Eduard Vorobyov , Vitaly Akimkin

Comets are believed to be born in the outer Solar System where the temperature is assumed to have never exceeded T ~ 100 K. Surprisingly, observations and samples of cometary dust particles returned to Earth showed that they are in fact…

Earth and Planetary Astrophysics · Physics 2015-05-20 Sergei Nayakshin , Seung-Hoon Cha , John Bridges

Extreme pressures and temperatures are known to drastically affect the chemistry of iron oxides resulting in numerous compounds forming homologous series $n$FeO$\cdot m$Fe$_2$O$_3$ and the appearance of FeO$_2$. Here, based on the results…

Uranium is the most important heat producing element in the Earth. The presence of an appreciable amount of U in the core of Earth would have an important influence on geodynamics. In this study, the solubility of U in Fe-10wt% S and in…

Astrophysics · Physics 2007-05-23 Xuezhao Bao , Richard A. Secco

The discovery of close-to-star gas-giant exo-planets lends support to the idea of Earth's origin as a Jupiter-like gas giant and to the consequences of its compression, including whole-Earth decompression dynamics that gives rise, without…

General Physics · Physics 2011-03-04 J. Marvin Herndon

The highest pressure form of the major Earth-forming mantle silicate is MgSiO3 post-perovskite (PPv). Understanding the fate of PPv at TPa pressures is the first step for understanding the mineralogy of super-Earths-type exoplanets,…

Gas-solid reactions are cornerstones of many catalytic and redox processes that will underpin the energy and sustainability transition. The specific case of hydrogen-based iron oxide reduction is the foundation to render the global steel…

Materials Science · Physics 2023-01-18 Ayman A. El-Zoka , Leigh T. Stephenson , Se-Ho Kim , Baptiste Gault , Dierk Raabe

Light volatile elements in lunar regolith are thought to be a mixture of the solar wind and Earth's atmosphere, the latter sourced in the absence of geomagnetic field. However, the extent to which both the current and primitive geodynamo…

Earth and Planetary Astrophysics · Physics 2024-12-03 Shubhonkar Paramanick , Eric G. Blackman , John A. Tarduno , Jonathan Carroll-Nellenback

Many sub-Neptune and super-Earth exoplanets are expected to develop metal-enriched atmospheres due to atmospheric loss processes such as photoevaporation or core-powered mass loss. Thermochemical equilibrium calculations predict that at…

Carbon is an essential element for the existence and evolution of life on Earth. Its abundance in Earth's crust and mantle (the Bulk Silicate Earth, BSE) is surprisingly high given that carbon is strongly siderophile (metal-loving) at low…

Earth and Planetary Astrophysics · Physics 2022-02-17 I. Blanchard , D. C. Rubie , E. S. Jennings , I. A. Franchi , X. Zhao , S. Petitgirard , N. Miyajima , S. A. Jacobson , A. Morbidelli

A long-term sublimation model to explain how Phaethon could provide the Geminid stream is proposed. We find that it would take $\sim6$ Myr or more for Phaethon to lose all of its internal ice (if ever there was) in its present orbit. Thus,…

Earth and Planetary Astrophysics · Physics 2018-11-28 LiangLiang Yu , Wing-Huen Ip , Tilman Spohn

In the classical grouping of large magnitude episodic variability of young accreting stars, FUORs outshine their stars by a factor of $\sim$ 100, and can last for up to centuries; EXORs are dimmer, and last months to a year. A disc Hydrogen…

Iron oxides are among the most abundant compounds on Earth and have consequently been studied and used extensively in industrial processes. Despite these efforts, concrete understanding of some of their surface phase structures has remained…

Investigating the fate of dissolved carbon dioxide under extreme conditions is critical to understanding the deep carbon cycle in the Earth, a process that ultimately influences global climate change. We used first-principles molecular…

Chemical Physics · Physics 2018-04-03 Ding Pan , Giulia Galli

The proportions of oxygen, carbon and major rock-forming elements (e.g. Mg, Fe, Si) determine a planet's dominant mineralogy. Variation in a planet's mineralogy subsequently affects planetary mantle dynamics as well as any deep water or…

Earth and Planetary Astrophysics · Physics 2015-06-17 Cayman T. Unterborn , Jason E. Kabbes , Jeffrey S. Pigott , Daniel R. Reaman , Wendy R. Panero

Gas giants are believed to form by the accretion of hydrogen-helium gas around an initial protocore of rock and ice. The question of whether the rocky parts of the core dissolve into the fluid H-He layers following formation has significant…

Earth and Planetary Astrophysics · Physics 2015-06-03 Hugh F. Wilson , Burkhard Militzer

Mesosiderites are a type of stony-iron meteorites composed of a mixture of silicates and Fe-Ni metals. The mesosiderite silicates and metals are considered to have originated from the crust and metal core, respectively, of a differentiated…

Earth and Planetary Astrophysics · Physics 2022-03-14 Keisuke Sugiura , Makiko K. Haba , Hidenori Genda

We discuss major challenges in modeling giant impacts between planetary bodies, focusing on the equations of state (EOS). During the giant impact stage of planet formation, rocky planets are melted and partially vaporized. However, most EOS…