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Dive into the research topics where David C. Catling is active.

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Featured researches published by David C. Catling.


The Astrophysical Journal | 2012

The Evolution of Solar Flux from 0.1 nm to 160 μm: Quantitative Estimates for Planetary Studies

Mark W. Claire; John Sheets; Martin Cohen; Ignasi Ribas; Victoria S. Meadows; David C. Catling

Understanding changes in the solar flux over geologic time is vital for understanding the evolution of planetary atmospheres because it affects atmospheric escape and chemistry, as well as climate. We describe a numerical parameterization for wavelength-dependent changes to the non-attenuated solar flux appropriate for most times and places in the solar system. We combine data from the Sun and solar analogs to estimate enhanced UV and X-ray fluxes for the young Sun and use standard solar models to estimate changing visible and infrared fluxes. The parameterization, a series of multipliers relative to the modern top of the atmosphere flux at Earth, is valid from 0.1 nm through the infrared, and from 0.6 Gyr through 6.7 Gyr, and is extended from the solar zero-age main sequence to 8.0 Gyr subject to additional uncertainties. The parameterization is applied to a representative modern day flux, providing quantitative estimates of the wavelength dependence of solar flux for paleodates relevant to the evolution of atmospheres in the solar system (or around other G-type stars). We validate the code by Monte Carlo analysis of uncertainties in stellar age and flux, and with comparisons to the solar proxies κ1 Cet and EK Dra. The model is applied to the computation of photolysis rates on the Archean Earth.


Archive | 2011

The Evolution Of The Solar Flux: Quantitative Estimates For Planetary Studies

Mark W. Claire; John Sheets; Myra B. Cohen; Ignasi Ribas; David C. Catling


Archive | 2010

The Evolution Of Solar Flux From 2nm To 160 Microns: Quantitative Estimates For Planetary Studies

Mark W. Claire; David C. Catling; Myra B. Cohen


別冊日経サイエンス | 2009

惑星の顔を決める大気流出 (見えてきた太陽系の起源と進化) -- (太陽系の起源と進化を探る)

David C. Catling; Kevin J. Zahnle


Pour la science | 2009

Comment les planètes perdent

David C. Catling; Kevin J. Zahnle


Archive | 2009

Atmospheric Production of Perchlorate on Earth and Mars

Mark W. Claire; David C. Catling; Kevin J. Zahnle


Archive | 2009

Does Microbial Zonation Recapitulate Phylogeny? A Possible Role for Biogenic Sulphur Gases in the Transition from Methane to Free Oxygen

Kevin J. Zahnle; David C. Catling; Mark W. Claire


Investigación y ciencia | 2009

Pérdidas en las atmósferas planetarias

David C. Catling; Kevin J. Zahnle


Archive | 2008

The great collapse of methane: Rethinking the rise of Oxygen

Mark W. Claire; David C. Catling; Kevin J. Zahnle


Archive | 2007

A Very Weakly Reducing Atmosphere Prior to the Rise in Atmospheric Oxygen

Mark W. Claire; David C. Catling; Kevin J. Zahnle

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Mark W. Claire

University of St Andrews

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Ignasi Ribas

Institut de Ciències de l'Espai

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Martin Cohen

University of California

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Roger Buick

University of Washington

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