The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
Corentin Schreiber, Maurilio Pannella, David Elbaz, Matthieu, B\'ethermin, Hanae Inami, Mark E. Dickinson, Benjamin Magnelli, Tao Wang,, Herv\'e Aussel, Emanuele Daddi, St\'ephanie Juneau, Xinwen Shu, Mark T., Sargent, V\'eronique Buat, Sandra M. Faber, Henry C. Ferguson, Mauro

TL;DR
This study uses Herschel data and stacking techniques to analyze galaxy growth from z=4 to present, revealing a universal main sequence of star formation and minimal merger impact on cosmic star formation history.
Contribution
Introduces 'scatter stacking' method and demonstrates the universality of the star-forming main sequence across cosmic time.
Findings
Galaxies follow a universal main sequence from z=4 to 0.
Flattening of the main sequence at high masses diminishes with redshift.
Over 2/3 of present-day stars formed during main sequence star formation.
Abstract
We present an analysis of the deepest Herschel images in four major extragalactic fields GOODS-North, GOODS-South, UDS and COSMOS obtained within the GOODS-Herschel and CANDELS-Herschel key programs. The picture provided by 10497 individual far-infrared detections is supplemented by the stacking analysis of a mass-complete sample of 62361 star-forming galaxies from the CANDELS-HST H band-selected catalogs and from two deep ground-based Ks band-selected catalogs in the GOODS-North and the COSMOS-wide fields, in order to obtain one of the most accurate and unbiased understanding to date of the stellar mass growth over the cosmic history. We show, for the first time, that stacking also provides a powerful tool to determine the dispersion of a physical correlation and describe our method called "scatter stacking" that may be easily generalized to other experiments. We demonstrate that…
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