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Related papers: Faint young Sun paradox remains

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Standard solar models predict a solar luminosity that gradually increased by about 30% over the past 4.5 billion years. Under the faint sun, Earth should have been frozen solid for most of its existence. Yet, running water is observed to…

Astrophysics · Physics 2015-06-24 Nir J. Shaviv

Earth's earliest sedimentary record contains evidence that surface temperatures were similar to, or perhaps even warmer than modern. In contrast, standard Solar models suggest the Sun was 25% less luminous at this ancient epoch, implying a…

Earth and Planetary Astrophysics · Physics 2019-04-03 Christopher Spalding , Woodward W. Fischer

The Faint Young Sun Paradox comes from the fact that solar luminosity (2-4)x10^9 years ago was insufficient to support the Earth's temperature necessary for the efficient development of geological and biological evolution (particularly, for…

Earth and Planetary Astrophysics · Physics 2015-10-20 Yurii V. Dumin

For more than four decades, scientists have been trying to find an answer to one of the most fundamental questions in paleoclimatology, the `faint young Sun problem'. For the early Earth, models of stellar evolution predict a solar energy…

Earth and Planetary Astrophysics · Physics 2012-05-28 Georg Feulner

We investigate the role which clouds could play in resolving the Faint Young Sun Paradox (FYSP). Lower solar luminosity in the past means that less energy was absorbed on Earth (a forcing of -50 Wm-2 during the late Archean), but geological…

Earth and Planetary Astrophysics · Physics 2015-05-27 Colin Goldblatt , Kevin J. Zahnle

Stellar evolution models predict that the solar luminosity was lower in the past, typically 20-25 % lower during the Archean (3.8-2.5 Ga). Despite the fainter Sun, there is strong evidence for the presence of liquid water on Earth's surface…

Earth and Planetary Astrophysics · Physics 2020-07-15 Benjamin Charnay , Eric T. Wolf , Bernard Marty , François Forget

The purpose of this paper is to explore a resolution for the Faint Young Sun Paradox that has been mostly rejected by the community, namely the possibility of a somewhat more massive young Sun with a large mass loss rate sustained for two…

Solar and Stellar Astrophysics · Physics 2017-09-20 Petrus C. Martens

Geological evidence suggests liquid water near the Earth's surface as early as 4.4 billion years ago when the faint young Sun only radiated about 70% of its modern power output. At this point, the Earth should have been a global snowball if…

Earth and Planetary Astrophysics · Physics 2021-11-29 René Heller , Jan-Peter Duda , Max Winkler , Joachim Reitner , Laurent Gizon

Despite a fainter Sun, the surface of the early Earth was mostly ice-free. Proposed solutions to this so-called "faint young Sun problem" have usually involved higher amounts of greenhouse gases than present in the modern-day atmosphere.…

Astrophysics · Physics 2008-09-11 P. von Paris , H. Rauer , L. Grenfell , B. Patzer , P. Hedelt , B. Stracke , T. Trautmann , F. Schreier

A moderately massive early Sun has been proposed to resolve the so-called faint early Sun paradox. We calculate the time-evolution of the solar mass that would be required by this hypothesis, using a simple parametrized energy-balance model…

Astrophysics · Physics 2011-02-11 David A. Minton , Renu Malhotra

Solar models suggest that four billion years ago the young Sun was about 25% fainter than it is today, rendering Earth's oceans frozen and lifeless. However, there is ample geophysical evidence that Earth had a liquid ocean teeming with…

Solar and Stellar Astrophysics · Physics 2015-06-19 Varun Sahni , Yuri Shtanov

Different solutions have been proposed to solve the "faint young Sun problem", defined by the fact that the Earth was not fully frozen during the Archean despite the fainter Sun. Most previous studies were performed with simple 1-D…

Earth and Planetary Astrophysics · Physics 2013-10-17 Benjamin Charnay , François Forget , Robin Wordsworth , Jérémy Leconte , Ehouarn Millour , Francis Codron , Aymeric Spiga

Models of the Sun's long-term evolution suggest that its luminosity was substantially reduced 2-4 billion years ago, which is inconsistent with substantial evidence for warm and wet conditions in the geological records of both ancient Earth…

Earth and Planetary Astrophysics · Physics 2018-12-19 Christopher Spalding , Woodward W. Fischer , Gregory Laughlin

Using kappa Ceti as a proxy for the young Sun we show that not only was the young Sun much more effective in protecting the Earth environment from galactic cosmic rays than the present day Sun; it also had flare and corona mass ejection…

Solar and Stellar Astrophysics · Physics 2015-03-13 C. Karoff , H. Svensmark

The Sun becomes brighter with time, but Earth's climate is roughly temperate for life during its long-term history; for early Earth, this is known as the Faint Young Sun Problem (FYSP). Besides the carbonate-silicate feedback, recent…

Atmospheric and Oceanic Physics · Physics 2022-09-07 Mingyu Yan , Jun Yang , Yixiao Zhang , Han Huang

Despite their importance for determining the evolution of the Earth's atmosphere and surface conditions, the evolutionary histories of the Earth's atmospheric CO$_2$ abundance during the Archean eon and the Sun's activity are poorly…

Earth and Planetary Astrophysics · Physics 2021-10-04 C. P. Johnstone , H. Lammer , K. G. Kislyakova , M. Scherf , M. Güdel

Given a solar luminosity L_Ar = 0.75 L_0 at the beginning of the Archean 3.8 Gyr ago, where L_0 is the present-day one, if the heliocentric distance r of the Earth was r_Ar = 0.956 r_0, the solar irradiance would have been as large as I_Ar…

Earth and Planetary Astrophysics · Physics 2013-10-21 Lorenzo Iorio

Stellar evolution theory predicts that the Sun was fainter in the past, which can pose difficulties for understanding Earth's climate history. One proposed solution to this Faint Young Sun problem is a more luminous Sun in the past. In this…

Solar and Stellar Astrophysics · Physics 2024-09-09 Connor Basinger , Marc Pinsonneault , Sandra T. Bastelberger , B. Scott Gaudi , Shawn Domagal-Goldman

Global warming due to human-made gases, mainly CO2, is already 0.8{\deg}C and deleterious climate impacts are growing worldwide. More warming is 'in the pipeline' because Earth is out of energy balance, with absorbed solar energy exceeding…

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
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