© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Broadley, M., Byrne, D., Ardoin, L., Almayrac, M., Bekaert, D., & Marty, B. High precision noble gas measurements of hydrothermal quartz reveal variable loss rate of Xe from the Archean atmosphere. Earth and Planetary Science Letters, 588, (2022): 117577, https://doi.org/10.1016/j.epsl.2022.117577.Determining the composition of the Archean atmosphere and oceans is vital to understanding the environmental conditions that existed on the surface of the early Earth. The analysis of atmospheric remnants in fluid inclusions trapped in Archean-aged samples has shown that the Xe isotopic signature ...
Isotopic composition and amounts of xenon extracted from eclogite, from old granite, and from CO_2-w...
Introduction: The D’Orbigny angrite, a 16.55 kg stone, was found 1979 in Argentina [1]. Mineralogy a...
By taking account of a size distribution of planetesimals, we show that noble gases gravitationally ...
Determining the composition of the Archean atmosphere and oceans is vital to understanding the envir...
Understanding the composition of the Archean atmosphere is vital for unraveling the origin of volati...
Xenon (Xe) is an exceptional tracer for investigating the origin and fate of volatile elements on Ea...
International audienceWe have analyzed ancient atmospheric gases trapped in fluid inclusions contain...
© The Author(s), 2021. This article is distributed under the terms of the Creative Commons Attributi...
(Figure Presented) Noble gases are chemically inert and, as such, act as unique tracers of physical ...
International audienceUnderstanding the growth rate of the continental crust through time is a funda...
International audienceXenon (Xe), the heaviest of the stable noble gases, is missing by a factor of ...
Abundance of noble gases extracted from Fig Tree Shale exhibit a marked deviation from the gas conte...
Insoluble organic materials (kerogens) isolated from ancient sedimentary rocks provide unique insigh...
Xenon in Earth's atmosphere is severely mass fractionated and depleted compared to any plausible sol...
International audienceThe noble gas isotope composition of the mantle can provide unique insights in...
Isotopic composition and amounts of xenon extracted from eclogite, from old granite, and from CO_2-w...
Introduction: The D’Orbigny angrite, a 16.55 kg stone, was found 1979 in Argentina [1]. Mineralogy a...
By taking account of a size distribution of planetesimals, we show that noble gases gravitationally ...
Determining the composition of the Archean atmosphere and oceans is vital to understanding the envir...
Understanding the composition of the Archean atmosphere is vital for unraveling the origin of volati...
Xenon (Xe) is an exceptional tracer for investigating the origin and fate of volatile elements on Ea...
International audienceWe have analyzed ancient atmospheric gases trapped in fluid inclusions contain...
© The Author(s), 2021. This article is distributed under the terms of the Creative Commons Attributi...
(Figure Presented) Noble gases are chemically inert and, as such, act as unique tracers of physical ...
International audienceUnderstanding the growth rate of the continental crust through time is a funda...
International audienceXenon (Xe), the heaviest of the stable noble gases, is missing by a factor of ...
Abundance of noble gases extracted from Fig Tree Shale exhibit a marked deviation from the gas conte...
Insoluble organic materials (kerogens) isolated from ancient sedimentary rocks provide unique insigh...
Xenon in Earth's atmosphere is severely mass fractionated and depleted compared to any plausible sol...
International audienceThe noble gas isotope composition of the mantle can provide unique insights in...
Isotopic composition and amounts of xenon extracted from eclogite, from old granite, and from CO_2-w...
Introduction: The D’Orbigny angrite, a 16.55 kg stone, was found 1979 in Argentina [1]. Mineralogy a...
By taking account of a size distribution of planetesimals, we show that noble gases gravitationally ...