Given that the macromolecular building blocks of life were likely produced photochemically in the presence of ultraviolet (UV) light, we identify some general constraints on which stars produce sufficient UV for this photochemistry. We estimate how much light is needed for the UV photochemistry by experimentally measuring the rate constant for the UV chemistry ("light chemistry", needed for prebiotic synthesis) versus the rate constants for the bimolecular reactions that happen in the absence of the UV light ("dark chemistry"). We make these measurements for representative photochemical reactions involving SO 3 2 - and HS- By balancing the rates for the light and dark chemistry, we delineate the "abiogenesis zones" around stars of different...
International audienceAims: We present time dependent chemical models for a dense and warm O-rich ga...
The synthesis of nucleobases in natural environments, especially in interstellar molecular clouds, i...
About 2.5 billion years ago, microbes learned to harness plentiful solar energy to reduce CO$_2$ wit...
ASTRONOMYCopyright©2018TheAuthors,somerightsreserved;exclusivelicenseeAmericanAssociationfortheAdvan...
Beginning with the Miller-Urey Experiments1, the laboratory has been essential in exploring the chem...
Models for the early Solar System assume that UV processing of volatiles played virtually no role in...
This study examines the UV environments created in the laboratory in or-der to simulate prebiotic co...
Stellar nucleosynthesis of heavy elements such as carbon allowed the formation of organic molecules ...
Stellar nucleosynthesis of heavy elements such as carbon allowed the formation of organic molecules ...
The UV environment of a host star affects the photochemistry in the atmosphere, and ultimately the s...
Origin of life is a still-enduring gap in human knowledge. This work is focused on revealing of seve...
The UV environment of a host star affects the photochemistry in the atmosphere, and ultimately the s...
We have proposed that the abiogenesis of life around the beginning of the Archean may have been an e...
Ultraviolet radiation is known to inhibit photosynthesis, induce DNA destruction and cause damage to...
Lifeless planets with CO2 atmospheres produce CO by CO2 photolysis. On planets around M dwarfs, CO i...
International audienceAims: We present time dependent chemical models for a dense and warm O-rich ga...
The synthesis of nucleobases in natural environments, especially in interstellar molecular clouds, i...
About 2.5 billion years ago, microbes learned to harness plentiful solar energy to reduce CO$_2$ wit...
ASTRONOMYCopyright©2018TheAuthors,somerightsreserved;exclusivelicenseeAmericanAssociationfortheAdvan...
Beginning with the Miller-Urey Experiments1, the laboratory has been essential in exploring the chem...
Models for the early Solar System assume that UV processing of volatiles played virtually no role in...
This study examines the UV environments created in the laboratory in or-der to simulate prebiotic co...
Stellar nucleosynthesis of heavy elements such as carbon allowed the formation of organic molecules ...
Stellar nucleosynthesis of heavy elements such as carbon allowed the formation of organic molecules ...
The UV environment of a host star affects the photochemistry in the atmosphere, and ultimately the s...
Origin of life is a still-enduring gap in human knowledge. This work is focused on revealing of seve...
The UV environment of a host star affects the photochemistry in the atmosphere, and ultimately the s...
We have proposed that the abiogenesis of life around the beginning of the Archean may have been an e...
Ultraviolet radiation is known to inhibit photosynthesis, induce DNA destruction and cause damage to...
Lifeless planets with CO2 atmospheres produce CO by CO2 photolysis. On planets around M dwarfs, CO i...
International audienceAims: We present time dependent chemical models for a dense and warm O-rich ga...
The synthesis of nucleobases in natural environments, especially in interstellar molecular clouds, i...
About 2.5 billion years ago, microbes learned to harness plentiful solar energy to reduce CO$_2$ wit...