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The energy associated with giant impacts is large enough to generate global magma oceans during Earth's accretion. However, geochemical evidence requiring a terrestrial magma ocean is scarce. Here we present evidence for at least two…

Earth and Planetary Astrophysics · Physics 2015-02-02 Jonathan M. Tucker , Sujoy Mukhopadhyay

We explore the likelihood that early remains of Earth, Mars, and Venus have been preserved on the Moon in high enough concentrations to motivate a search mission. During the Late Heavy Bombardment, the inner planets experienced frequent…

Astrophysics · Physics 2009-11-07 John C. Armstrong , Llyd E. Wells , Guillermo Gonzalez

Many dynamical aspects of the solar system can be explained by the outer planets experiencing a period of orbital instability sometimes called the Nice Model. Though often correlated with a perceived delayed spike in the lunar cratering…

Earth and Planetary Astrophysics · Physics 2018-05-16 Matthew S. Clement , Nathan A. Kaib , Sean N. Raymond , Kevin J. Walsh

According to the giant impact theory, the Moon formed by accreting the circum-terrestrial debris disk produced by Theia colliding with the proto-Earth. The giant impact theory can explain most of the properties of the Earth-Moon system,…

Earth and Planetary Astrophysics · Physics 2025-05-15 Wenshuai Liu

The atmospheres of the terrestrial planets are known to have been modified as a consequence of the impact degassing and atmospheric erosion during the late accretion. Despite the commonality of these processes, there are distinct gaps --…

Earth and Planetary Astrophysics · Physics 2018-08-08 Haruka Sakuraba , Hiroyuki Kurokawa , Hidenori Genda

White dwarfs that have accreted planetary bodies are a powerful probe of the bulk composition of exoplanetary material. In this paper, we present a Bayesian model to explain the abundances observed in the atmospheres of 202 DZ white dwarfs…

Earth and Planetary Astrophysics · Physics 2021-03-31 John H. D. Harrison , Amy Bonsor , Mihkel Kama , Andrew M. Buchan , Simon Blouin , Detlev Koester

Aims. Particles ejected from the lunar surface via hypervelocity impacts form a torus between the Earth and the Moon. According to our previous study (Yang et al., A\&A, 659, A120), among them about $2.3\times10^{-4}\,\mathrm{kg/s}$…

Earth and Planetary Astrophysics · Physics 2025-07-22 Kun Yang , Yu Jiang , Youpeng Liang , Xiaodong Liu

The timescales of accretion, core formation, and magmatic differentiation in planetary bodies can be constrained using extinct radionuclide systems. Experiments have shown that Ni becomes more siderophile with decreasing pressure, which is…

Earth and Planetary Astrophysics · Physics 2015-06-18 Haolan Tang , Nicolas Dauphas

Large impacts onto young rocky planets may transform their compositions, creating highly reducing conditions at their surfaces and reintroducing highly siderophile metals to their mantles. Key to these processes is the availability of an…

Earth and Planetary Astrophysics · Physics 2024-04-04 Jonathan P. Itcovitz , Auriol S. P. Rae , Thomas M. Davison , Gareth S. Collins , Oliver Shorttle

The deuterium-to-hydrogen (D/H or 2H/1H) ratio of Martian atmospheric water (~6x standard mean ocean water, SMOW) is higher than that of known sources, requiring planetary enrichment. A recent measurement by NASA's Mars Science Laboratory…

Earth and Planetary Astrophysics · Physics 2022-09-23 Kaveh Pahlevan , Laura Schaefer , Linda T. Elkins-Tanton , Steven J. Desch , Peter R. Buseck

In the leading theory of lunar formation, known as the giant impact hypothesis, a collision between two planet-size objects resulted in a young Earth surrounded by a circumplanetary debris disk from which the Moon later accreted. The range…

Earth and Planetary Astrophysics · Physics 2023-07-13 Miles Timpe , Christian Reinhardt , Thomas Meier , Joachim Stadel , Ben Moore

Here we critically examine the geophysical and geochemical properties of the Moon in order to identify the extent to which dynamical scenarios satisfy these observations. New joint inversions of existing lunar geophysical data (mean mass,…

Earth and Planetary Astrophysics · Physics 2025-12-22 Paolo A. Sossi , Miki Nakajima , Amir Khan

The earliest stage of the evolution of a fully assembled planet is profoundly affected by a number of basin-forming impacts large enough to change the dynamics of its deeper interior. These impacts are in some cases quite closely spaced and…

Earth and Planetary Astrophysics · Physics 2019-01-29 Thomas Ruedas , Doris Breuer

The current standard theory of the origin of the Moon is that the Earth was hit by a giant impactor the size of Mars causing ejection of iron poor impactor mantle debris that coalesced to form the Moon. But where did this Mars-sized…

Astrophysics · Physics 2014-10-13 Edward Belbruno , J. Richard Gott

The study of planetesimal debris accreted by white dwarfs offers unique insights into the composition of exoplanets. Using far-ultraviolet and optical spectroscopy, we have analysed the composition of planetesimals accreted by three metal…

We present a detailed study of the metal-polluted DB white dwarf SDSS J0845+2257 (Ton 345). Using high-resolution HST/COS and VLT spectroscopy, we have detected hydrogen and eleven metals in the atmosphere of the white dwarf. The origin of…

Earth and Planetary Astrophysics · Physics 2015-06-02 David J. Wilson , Boris T. Gaensicke , Detlev Koester , Odette Toloza , Anna F. Pala , Elmé Breedt , Steven G. Parsons

Three principal concepts regarding lunar formation have been examined: the accretion hypothesis, the mega-impact theory, and the multi-impact model. The multi-impact model amalgamates the salient facets of the mega-impact theory and the…

Earth and Planetary Astrophysics · Physics 2023-10-27 Nick Gorkavyi

The decay of the martian atmosphere - which is dominated by carbon dioxide - is a component of the long-term environmental change on Mars from a climate that once allowed rivers to flow to the cold and dry conditions of today. The minimum…

Earth and Planetary Astrophysics · Physics 2017-12-12 Edwin S. Kite , Jean-Pierre Williams , Antoine Lucas , Oded Aharonson

We model large-scale ($\approx$2000km) impacts on a Mars-like planet using a Smoothed Particle Hydrodynamics code. The effects of material strength and of using different Equations of State on the post-impact material and temperature…

Earth and Planetary Astrophysics · Physics 2019-08-01 Alexandre Emsenhuber , Martin Jutzi , Willy Benz

The Late Heavy Bombardment (LHB) period is the narrow time interval between 3.8 and 3.9 Gyr ago, where the bulk of the craters we see on the Moon formed. Even more craters formed on the Earth. During a field expedition to the 3.8 Gyr old…

Earth and Planetary Astrophysics · Physics 2021-12-22 Uffe Graae Jorgensen , Peter W. U. Appel , Yuichi Hatsukawa , Robert Frei , Masumi Oshima , Yosuke Toh , Atsushi Kimura