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Related papers: Dynamics of the Great Oxidation Event from a 3D ph…

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The Great Oxidation Event (GOE), which marked the transition from an anoxic to an oxygenated atmosphere, occurred 2.4 billion years ago on Earth, several hundreds of millions of years after the emergence of oxygenic photosynthesis. This…

Earth and Planetary Astrophysics · Physics 2026-02-23 Adam Y. Jaziri , Nathalie Carrasco , Benjamin Charnay

The history of molecular oxygen (O$_2$) in Earth's atmosphere is still debated; however, geological evidence supports at least two major episodes where O$_2$ increased by an order of magnitude or more: the Great Oxidation Event (GOE) and…

Earth and Planetary Astrophysics · Physics 2022-01-12 Gregory Cooke , Dan Marsh , Catherine Walsh , Benjamin Black , Jean-François Lamarque

Competing geophysical/geochemical hypotheses for how Earth's surface became oxygenated - organic carbon burial, hydrogen escape to space, and changes in the redox state of volcanic gases - are examined and a more biologically-based…

Earth and Planetary Astrophysics · Physics 2012-04-02 John W. Grula

Approximately 1.4 Ga after life first appeared, atmospheric oxygen suddenly jumped by more than an order of magnitude over a 20-50 Ma period. The contrast between these two timescales does not seem to be due to any sudden, large amplitude…

Atmospheric and Oceanic Physics · Physics 2025-12-08 Andrew P. Ingersoll

The Great Oxidation Event (GOE) was a $200$ Myr transition circa 2.4 billion years ago that converted the Earth's anoxic atmosphere to one where molecular oxygen (O$_2$) was abundant (volume mixing ratio $>10^{-4}$). This significant rise…

Earth and Planetary Astrophysics · Physics 2026-02-25 Gregory J. Cooke , Dan R. Marsh , Catherine Walsh , Felix Sainsbury-Martinez , Marrick Braam

Molecular oxygen in our atmosphere has increased from less than a part per million in the Archean Eon, to a fraction of a percent in the Proterozoic, and finally to modern levels during the Phanerozoic. The ozone layer formed with the early…

Earth and Planetary Astrophysics · Physics 2023-07-25 Russell Deitrick , Colin Goldblatt

Understanding the evolution of Earth and potentially habitable Earth-like worlds is essential to fathom our origin in the Universe. The search for Earth-like planets in the habitable zone and investigation of their atmospheres with climate…

Earth and Planetary Astrophysics · Physics 2018-07-19 S. Gebauer , J. L. Grenfell , J. W. Stock , R. Lehmann , M. Godolt , P. von Paris , H. Rauer

The Great Oxidation Event was a period during which Earth's atmospheric oxygen (O$_2$) concentrations increased from $\sim 10^{-5}$ times its present atmospheric level (PAL) to near modern levels, marking the start of the Proterozoic…

Earth and Planetary Astrophysics · Physics 2022-09-28 Gregory Cooke , Dan Marsh , Catherine Walsh , Sarah Rugheimer , Geronimo Villanueva

The rise of oxygen in the Earth's atmosphere during the Great Oxidation Event (GOE) occurred about 2.3 billion years ago. There is considerably greater uncertainty for the origin of oxygenic photosynthesis, but it likely occurred…

Earth and Planetary Astrophysics · Physics 2026-01-07 Joseph J. Soliz , William F. Welsh

The rise of oxygen in Earth's atmosphere that occurred 2.4 to 2.2 billion years ago is known as the Earth's Great Oxidation, and its impact on the development of life on Earth has been profound. Thereafter, the increase in Earth's oxygen…

Chaotic Dynamics · Physics 2023-07-19 Satish Kumar , Manfred Cuntz , Zdzislaw E. Musielak

Methane is thought to have been an important greenhouse gas during the Archean, although its potential warming has been found to be limited at high concentrations due to its high shortwave absorption. We use the Met Office Unified Model, a…

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

We present results from 3D simulations of the Archean Earth including a prescribed (non-interactive) spherical haze generated through a 1D photochemical model. Our simulations suggest that a thin haze layer, formed when CH4/CO2 = 0.1, leads…

Earth and Planetary Astrophysics · Physics 2023-11-16 M. T. Mak , N. J. Mayne , D. E. Sergeev , J. Manners , J. K. Eager-Nash , G. Arney , E. Hebrard , K. Kohary

Oxygen isotopes in marine cherts have been used to infer hot oceans during the Archean with temperatures between 60{\deg}C (333 K) and 80{\deg}C (353 K). Such climates are challenging for the early Earth warmed by the faint young Sun. The…

Earth and Planetary Astrophysics · Physics 2017-07-26 Benjamin Charnay , Guillaume Le Hir , Frédéric Fluteau , François Forget , David C. Catling

Carbon dioxide is one of the major contributors to the radiative forcing, increasing both the temperature and the humidity of Earth's atmosphere. If the stellar irradiance increases and water becomes abundant in the stratosphere of an…

Earth and Planetary Astrophysics · Physics 2019-01-11 Illeana Gomez-Leal , Lisa Kaltenegger , Valerio Lucarini , Frank Lunkeit

The development of habitable conditions on Earth is tightly connected to the evolution of its atmosphere which is strongly influenced by atmospheric escape. We investigate the evolution of the polar ion outflow from the open field line…

Earth and Planetary Astrophysics · Physics 2020-08-25 K. G. Kislyakova , C. P. Johnstone , M. Scherf , M. Holmström , I. I. Alexeev , H. Lammer , M. L. Khodachenko , M. Güdel

A set of idealized experiments are performed to analyze the competing effects of declining atmospheric CO2 concentrations, the opening of an ocean gateway, and varying orbital parameters. These forcing mechanisms, which influence the global…

Atmospheric and Oceanic Physics · Physics 2016-02-04 Eileen Hertwig , Frank Lunkeit , Klaus Fraedrich

The case for a much warmer climate on the early Earth than now is presented. The oxygen isotope record in sedimentary chert and the compelling case for a near constant isotopic oxygen composition of seawater over geologic time support…

Earth and Planetary Astrophysics · Physics 2015-04-03 David W. Schwartzman

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.…

Determining the habitability and interpreting future atmospheric observations of exoplanets requires understanding the atmospheric dynamics and chemistry from a 3-D perspective. Previous studies have shown significant spatial variability in…

Earth and Planetary Astrophysics · Physics 2023-11-17 Marrick Braam , Paul I. Palmer , Leen Decin , Maureen Cohen , Nathan J. Mayne
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