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the GDDS team

Publications and source records attributed to the GDDS team.

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Rapid Growth of Massive Galaxies: A Paradox for Hierarchical Formation Models

On behalf of the survey teams I summarize the designs and results of the Las Campanas Infrared Survey and Gemini Deep Deep Survey, both of which were initiated to understand the nature of red galaxies and to study the history of stellar mass assembly. Our results from luminosity function analysis, ISM absorption line measurements, and spectral synthesis modeling show that near-infrared selected galaxies at 1<z<2 are not only massive and abundant but also old and metal enriched, indicating rapid formation of massive systems at higher redshifts.

astro-ph

Probing the Redshift Desert Using the Gemini Deep Deep Survey: observing galaxy mass assembly at z>1

The aim of the Gemini Deep Deep Survey is to push spectroscopic studies of complete galaxy samples (both red and blue objects) significantly beyond z=1; this is the redshift where the current Hubble sequence of ellipticals and spirals is already extant. In the Universe at z=2 the only currently spectroscopically confirmed galaxies are blue, star-forming and of fragmented morphology. Exploring this transition means filling the `redshift desert' 1 1 which has led us to carry out the longest exposure redshift survey ever done: 100 ksec spectroscopic MOS exposures with GMOS on Gemini North. We have developed an implementation of the CCD ``nod & shuffle'' technique to ensure precise sky-subtraction in these ultra-deep exposures. At the halfway mark the GDDS now has ~36 galaxies in the redshift desert 1.2<z<2 extending up to z=1.97 and I<24.5 with secure redshifts based on weak rest-frame UV absorption features complete for both red, old objects and young, blue objects. The peak epoch of galaxy assembly is now being probed by direct spectroscopic investigation for the first time. On behalf of the GDDS team I present our first results on the properties of galaxies in the `redshift desert'.

astro-ph