Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are therefore of special interest in the study of galaxy evolution. The Milky Way (MW) and Andromeda (M31) have present-day stellar masses near M*, at 5 × 1010 M ☉ (defined here to be MW-mass) and 1011 M☉ (defined to be M31-mass). We study the typical progenitors of these galaxies using the FOURSTAR Galaxy Evolution Survey (ZFOURGE). ZFOURGE is a deep medium-band near-IR imaging survey, which is sensitive to the progenitors of these galaxies out to z ~ 3. We use abundance-matching techniques to identify the main progenitors of these galaxies at higher redshifts. We measure the evolution in the stellar mass, rest-frame colors, morphologi...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Using observations from the FourStar Galaxy Evolution Survey (ZFOURGE), we obtain the deepest measur...
Using observations from the FourStar Galaxy Evolution Survey (ZFOURGE), we obtain the deepest measur...
Using observations from the FourStar Galaxy Evolution Survey (ZFOURGE), we obtain the deepest measur...
We follow the structural evolution of star-forming galaxies (SFGs) like the Milky Way by selecting p...
Our understanding of the redshift z>3 galaxy population relies largely on samples selected using the...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Galaxies with stellar masses near M* contain the majority of stellar mass in the universe, and are t...
Using observations from the FourStar Galaxy Evolution Survey (ZFOURGE), we obtain the deepest measur...
Using observations from the FourStar Galaxy Evolution Survey (ZFOURGE), we obtain the deepest measur...
Using observations from the FourStar Galaxy Evolution Survey (ZFOURGE), we obtain the deepest measur...
We follow the structural evolution of star-forming galaxies (SFGs) like the Milky Way by selecting p...
Our understanding of the redshift z>3 galaxy population relies largely on samples selected using the...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...
Our understanding of the redshift z > 3 galaxy population relies largely on samples selected using t...