abstract: Exoplanetary research is a key component in the search for life outside of Earth and the Solar System. It provides people with a sense of wonder about their role in the evolution of the Universe and helps scientists understand life's potential throughout a seemingly infinite number of unique exoplanetary environments. The purpose of this research project is to identify the most plausible biosignature gases that would indicate life's existence in the context of hyperarid exoplanetary atmospheres. This analysis first defines hyperarid environments based on known analogues for Earth and Mars and discusses the methods that researchers use to determine whether or not an exoplanet is hyperarid. It then identifies the most relevant biosi...
Thesis (Ph.D.)--University of Washington, 2019It will soon be possible to determine the atmospheric ...
Biological activity has changed the Earth environment on a global scale. One metabolism - oxygenic p...
The study of exoplanet atmospheres for possible biosignatures will continue to dominate our understa...
Thousands of exoplanets orbit nearby stars and the possibility that one of them may contain extrater...
We describe how environmental context can help determine whether oxygen (O2) detected in extrasolar ...
In the coming years and decades, advanced space- and ground-based observatories will allow an unprec...
Life has likely coevolved with the Earth system in time in various ways. Our oxygen-rich atmosphere ...
Microbial life on Earth uses a wide range of chemical and energetic resources from diverse habitats....
In the coming years and decades, advanced space- and ground-based observatories will allow an unprec...
In the coming years and decades, advanced space- and ground-based observatories will allow an unprec...
Here we review how environmental context can be used to interpret whether O2 is a biosignature in ex...
Thousands of exoplanets are known to orbit nearby stars. Plans for the next generation of space-base...
Methane has been proposed as an exoplanet biosignature. Imminent observations with the James Webb Sp...
In the coming years and decades, advanced space- and ground-based observatories will allow an unprec...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Theory and observation fo...
Thesis (Ph.D.)--University of Washington, 2019It will soon be possible to determine the atmospheric ...
Biological activity has changed the Earth environment on a global scale. One metabolism - oxygenic p...
The study of exoplanet atmospheres for possible biosignatures will continue to dominate our understa...
Thousands of exoplanets orbit nearby stars and the possibility that one of them may contain extrater...
We describe how environmental context can help determine whether oxygen (O2) detected in extrasolar ...
In the coming years and decades, advanced space- and ground-based observatories will allow an unprec...
Life has likely coevolved with the Earth system in time in various ways. Our oxygen-rich atmosphere ...
Microbial life on Earth uses a wide range of chemical and energetic resources from diverse habitats....
In the coming years and decades, advanced space- and ground-based observatories will allow an unprec...
In the coming years and decades, advanced space- and ground-based observatories will allow an unprec...
Here we review how environmental context can be used to interpret whether O2 is a biosignature in ex...
Thousands of exoplanets are known to orbit nearby stars. Plans for the next generation of space-base...
Methane has been proposed as an exoplanet biosignature. Imminent observations with the James Webb Sp...
In the coming years and decades, advanced space- and ground-based observatories will allow an unprec...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Theory and observation fo...
Thesis (Ph.D.)--University of Washington, 2019It will soon be possible to determine the atmospheric ...
Biological activity has changed the Earth environment on a global scale. One metabolism - oxygenic p...
The study of exoplanet atmospheres for possible biosignatures will continue to dominate our understa...