Roman offers such great survey capabilities, from wide to deep to ultradeep, that it might be easier to ask “What science can’t it do?” High-z emission-line galaxy samples will increase by orders of magnitude! Choosing Roman Deep Fields ASAP will allow observing proposals for expensive-but-needed complementary data. Astrophysical data science is advancing rapidly; hard to extrapolate, but should at least use current state-of-the-art (e.g., non-parametric star formation histories) in planning community surveys with Roman. The photo-z methods and clustering analyses used for cosmology today will be galaxy evolution techniques in the Roman era
Roman Surveys will provide Samples of Galaxies 100× larger, with Hubble-like data. Facilitate studie...
In the last decade a new generation of telescopes and sensors has allowed the production of a very l...
In the last decade a new generation of telescopes and sensors has allowed the production of a very l...
The wide field of view of the Roman Space Telescope, ~100-200x larger than Hubble, has vast scientif...
The last 30 years with HST has transformed our understanding of galaxy evolution, and taught valuabl...
Roman Extragalactic Potential Observations (EXPO) Science Investigation Team. Roman will be transfor...
I will discuss how the Nearby Galaxies Science Investigation Team (WINGS) is working to optimize the...
NASA's Roman will redefine deep-field galaxy surveys with its field of view two orders of magnitude ...
While the z > 9 universe is still a vast unknown, tremendous progress has been made with ultra-deep ...
I will discuss three sample Roman Telescope near-field cosmology science cases: (1) Milky Way (MW) h...
I will present the utility of the COSMOS-Web JWST treasury program for future Roman Space Telescope ...
There is a huge amount of astrophysical events that remain barely studied due to the lack of large, ...
We simulate the scientific performance of the Nancy Grace Roman Space Telescope High Latitude Survey...
The shape and evolution of the rest-frame UV luminosity function constrains the relative importance ...
The results emerging from JWST are changing our understanding of galaxy evolution in profound and ex...
Roman Surveys will provide Samples of Galaxies 100× larger, with Hubble-like data. Facilitate studie...
In the last decade a new generation of telescopes and sensors has allowed the production of a very l...
In the last decade a new generation of telescopes and sensors has allowed the production of a very l...
The wide field of view of the Roman Space Telescope, ~100-200x larger than Hubble, has vast scientif...
The last 30 years with HST has transformed our understanding of galaxy evolution, and taught valuabl...
Roman Extragalactic Potential Observations (EXPO) Science Investigation Team. Roman will be transfor...
I will discuss how the Nearby Galaxies Science Investigation Team (WINGS) is working to optimize the...
NASA's Roman will redefine deep-field galaxy surveys with its field of view two orders of magnitude ...
While the z > 9 universe is still a vast unknown, tremendous progress has been made with ultra-deep ...
I will discuss three sample Roman Telescope near-field cosmology science cases: (1) Milky Way (MW) h...
I will present the utility of the COSMOS-Web JWST treasury program for future Roman Space Telescope ...
There is a huge amount of astrophysical events that remain barely studied due to the lack of large, ...
We simulate the scientific performance of the Nancy Grace Roman Space Telescope High Latitude Survey...
The shape and evolution of the rest-frame UV luminosity function constrains the relative importance ...
The results emerging from JWST are changing our understanding of galaxy evolution in profound and ex...
Roman Surveys will provide Samples of Galaxies 100× larger, with Hubble-like data. Facilitate studie...
In the last decade a new generation of telescopes and sensors has allowed the production of a very l...
In the last decade a new generation of telescopes and sensors has allowed the production of a very l...