The emergence of molecular oxygen (O2) in the Earth's primitive atmosphere is an issue of major interest. Although the biological processes leading to its accumulation in the Earth's atmosphere are well understood, its abiotic source is still not fully established. Here, we report a new direct dissociation channel yielding S(1D) + O2(a1Δg/X3Σg−) products from vacuum ultraviolet (VUV) photodissociation of SO2 in the wavelength range between 120 and 160 nm. Experimental results show O2 production to be an important channel from SO2 VUV photodissociation, with a branching ratio of 30 ± 5% at the H Lyman-α wavelength (121.6 nm). The relatively large amounts of SO2 emitted from volcanic eruptions in the Earth's late Archaean eon imply that VUV p...
The evolution of oxygenic photosynthesis has dramatically reshaped the chemistry of the surface Eart...
The rise of atmospheric O_2 was a milestone in the history of life. Although O_2 itself is not a cli...
Mass-independent fractionation (MIF) of sulfur isotopes has been reported in sediments of Archean an...
Molecular oxygen, O$_2$, is vital to life on Earth and possibly on other planets. Although the bioge...
Molecular oxygen, O2, is vital to life on Earth and possibly also on exoplanets. Although the biogen...
International audienceThe Precambrian history of our planet is marked by two major events: a pulse o...
This article examines the geological evidence for the rise of atmospheric oxygen and the origin of o...
Sulfur compounds have been observed in a number of planetary atmospheres throughout our solar system...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Earth, Atmospheric, and Planeta...
Minor sulfur isotope anomalies indicate the absence of O2 from the Archean atmosphere. A rich datase...
The abrupt rise of molecular oxygen in Earth’s atmosphere approximately 2.4 billion years ago was pe...
We describe how environmental context can help determine whether oxygen (O2) detected in extrasolar ...
AbstractMinor sulfur isotope anomalies indicate the absence of O2 from the Archean atmosphere. A ric...
Aerobic respiration—the reduction of molecular oxygen (O_2) coupled to the oxidation of reduced comp...
Theoretical calculations performed with a one-dimensional photochemical model have been performed to...
The evolution of oxygenic photosynthesis has dramatically reshaped the chemistry of the surface Eart...
The rise of atmospheric O_2 was a milestone in the history of life. Although O_2 itself is not a cli...
Mass-independent fractionation (MIF) of sulfur isotopes has been reported in sediments of Archean an...
Molecular oxygen, O$_2$, is vital to life on Earth and possibly on other planets. Although the bioge...
Molecular oxygen, O2, is vital to life on Earth and possibly also on exoplanets. Although the biogen...
International audienceThe Precambrian history of our planet is marked by two major events: a pulse o...
This article examines the geological evidence for the rise of atmospheric oxygen and the origin of o...
Sulfur compounds have been observed in a number of planetary atmospheres throughout our solar system...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Earth, Atmospheric, and Planeta...
Minor sulfur isotope anomalies indicate the absence of O2 from the Archean atmosphere. A rich datase...
The abrupt rise of molecular oxygen in Earth’s atmosphere approximately 2.4 billion years ago was pe...
We describe how environmental context can help determine whether oxygen (O2) detected in extrasolar ...
AbstractMinor sulfur isotope anomalies indicate the absence of O2 from the Archean atmosphere. A ric...
Aerobic respiration—the reduction of molecular oxygen (O_2) coupled to the oxidation of reduced comp...
Theoretical calculations performed with a one-dimensional photochemical model have been performed to...
The evolution of oxygenic photosynthesis has dramatically reshaped the chemistry of the surface Eart...
The rise of atmospheric O_2 was a milestone in the history of life. Although O_2 itself is not a cli...
Mass-independent fractionation (MIF) of sulfur isotopes has been reported in sediments of Archean an...