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The origin of life on Earth would benefit from a prebiotic atmosphere that produced nitriles, like HCN, which enable ribonucleotide synthesis. However, geochemical evidence suggests that Hadean air was relatively oxidizing with negligible…

Earth and Planetary Astrophysics · Physics 2023-07-20 Nicholas F. Wogan , David C. Catling , Kevin J. Zahnle , Roxana Lupu

Earth is expected to have acquired a reduced proto-atmosphere enriched in H2 and CH4 through the accretion of building blocks that contain metallic Fe and/or the gravitational trapping of surrounding nebula gas. Such an early, wet, reduced…

Earth and Planetary Astrophysics · Physics 2024-10-28 Tatsuya Yoshida , Shungo Koyama , Yuki Nakamura , Naoki Terada , Kiyoshi Kuramoto

After Earth's origin, our host star, the Sun, was shining 20 to 25 percent less brightly than today. Without greenhouse-like conditions to warm the atmosphere, our early planet would have been an ice ball and life may never have evolved.…

The origin of life on Earth involves the early appearance of an information-containing molecule such as RNA. The basic building blocks of RNA could have been delivered by carbon-rich meteorites, or produced in situ by processes beginning…

Earth and Planetary Astrophysics · Physics 2022-06-15 Ben K. D. Pearce , Karan Molaverdikhani , Ralph E. Pudritz , Thomas Henning , Kaitlin E. Cerrillo

Earth's water, intrinsic oxidation state, and metal core density are fundamental chemical features of our planet. Studies of exoplanets provide a useful context for elucidating the source of these chemical traits. Planet formation and…

Earth and Planetary Astrophysics · Physics 2023-04-18 Edward D. Young , Anat Shahar , Hilke E. Schlichting

The Moon-forming giant impact extensively melts and partially vaporizes the silicate Earth and delivers a substantial mass of metal to Earth's core. Subsequent evolution of the magma ocean and overlying atmosphere has been described by…

Earth and Planetary Astrophysics · Physics 2019-10-24 Kaveh Pahlevan , Laura Schaefer , Marc M. Hirschmann

During the accretion of Titan, impact heating may have been sufficient to allow the global melting of water ice and the release of volatile compounds, mainly constituted of CO2, CH4 and NH3. The duration and efficiency of exchange between…

Earth and Planetary Astrophysics · Physics 2018-06-06 Nadejda Marounina , Olivier Grasset , Gabriel Tobie , Sabrina Carpy

The history of the Earth has been marked by major ecological transitions, driven by metabolic innovation, that radically reshaped the composition of the oceans and atmosphere. The nature and magnitude of the earliest transitions, hundreds…

Populations and Evolution · Quantitative Biology 2020-06-12 Boris Sauterey , Benjamin Charnay , Antonin Affholder , Stéphane Mazevet , Régis Ferrière

Impacts may have had a significant effect on the atmospheric chemistry of the early Earth. Reduced phases in the impactor (e.g., metallic iron) can reduce the planet's H$_2$O inventory to produce massive atmospheres rich in H$_2$. Whilst…

Earth and Planetary Astrophysics · Physics 2022-05-25 J. P. Itcovitz , A. S. P. Rae , R. I. Citron , S. T. Stewart , C. A. Sinclair , P. B. Rimmer , O. Shorttle

Rocky planets may acquire a primordial atmosphere by outgassing of volatiles from their magma ocean. The distribution of O between H$_2$O, CO and CO$_2$ in chemical equilibrium subsequently changes significantly with decreasing temperature.…

Earth and Planetary Astrophysics · Physics 2024-09-18 Anders Johansen , Eloi Camprubi , Elishevah van Kooten , Jens Hoeijmakers

Recent advances in our understanding of the dynamical history of the Solar system have altered the inferred bombardment history of the Earth during accretion of the Late Veneer, after the Moon-forming impact. We investigate how the…

Earth and Planetary Astrophysics · Physics 2020-10-21 Catriona A. Sinclair , Mark C. Wyatt , Alessandro Morbidelli , David Nesvorny

Understanding what environmental conditions prevailed on early Earth during the Hadean eon, and how this set the stage for the origins of life, remains a challenge. Geologic processes such as serpentinization and bombardment by chondritic…

Nitrogen is the most common element in Earth's atmosphere and also appears to be present in significant amounts in the mantle. However, its long-term cycling between these two reservoirs remains poorly understood. Here a range of biotic and…

Earth and Planetary Astrophysics · Physics 2016-05-26 R. D. Wordsworth

The atmosphere of a terrestrial planet that is replenished with secondary gases should have accumulated hydrogen-rich gas from its protoplanetary disk. Although a giant impact blows off a large fraction of the primordial atmosphere of a…

Earth and Planetary Astrophysics · Physics 2023-09-28 Kenji Kurosaki , Yasunori Hori , Masahiro Ogihara , Masanobu Kunitomo

Conventional planet formation theory suggests that chondritic materials have delivered crucial atmospheric and hydrospheric elements such as carbon (C), nitrogen (N), and hydrogen (H) onto primitive Earth. However, recent measurements…

Earth and Planetary Astrophysics · Physics 2022-08-31 Howard Chen , Seth A. Jacobson

The Earth's N2-dominated atmosphere is a very special feature. Firstly, N2 as main gas is unique on the terrestrial planets in the inner solar system and gives a hint for tectonic activity. Studying the origins of atmospheric nitrogen and…

Earth and Planetary Astrophysics · Physics 2021-03-18 Laurenz Sproß , Manuel Scherf , Valery I. Shematovich , Dmitry Bisikalo , Helmut Lammer

The earliest atmospheres of rocky planets originate from extensive volatile release during magma ocean epochs that occur during assembly of the planet. These establish the initial distribution of the major volatile elements between…

Earth and Planetary Astrophysics · Physics 2021-04-28 Tim Lichtenberg , Dan J. Bower , Mark Hammond , Ryan Boukrouche , Patrick Sanan , Shang-Min Tsai , Raymond T. Pierrehumbert

A critical early stage for the origin of life on Earth may have involved the production of hydrogen cyanide (HCN) in a reducing, predominantly H$_2$ atmosphere. HCN is crucial for the origin of life as it is a possible precursor to several…

Earth and Planetary Astrophysics · Physics 2022-10-21 Ben K. D. Pearce , Chao He , Sarah M. Hörst

Earth's volatile elements (H, C, and N) are essential to maintaining habitable conditions for metazoans and simpler life forms. However, identifying the sources (comets, meteorites, and trapped nebular gas) that supplied volatiles to Earth…

Earth and Planetary Astrophysics · Physics 2013-12-05 Nicolas Dauphas , Alessandro Morbidelli

It is now understood that the accretion of terrestrial planets naturally involves giant collisions, the moon-forming impact being a well known example. In the aftermath of such collisions the surface of the surviving planet is very hot and…

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