A duality in the origin of bulges and spheroidal galaxies
arXiv:2103.10438 · doi:10.3847/1538-4357/abef72
Abstract
Studying the resolved stellar populations of the different structural components which build massive galaxies directly unveils their assembly history. We aim at characterizing the stellar population properties of a representative sample of bulges and pure spheroids in massive galaxies ( M) in the GOODS-N field. We take advantage of the spectral and spatial information provided by SHARDS and HST data to perform the multi-image spectro-photometrical decoupling of the galaxy light. We derive the spectral energy distribution separately for bulges and disks in the redshift range with spectral resolution . Analyzing these SEDs, we find evidences of a bimodal distribution of bulge formation redshifts. We find that 33% of them present old mass-weighted ages, implying a median formation redshift . They are relics of the early Universe embedded in disk galaxies. A second wave, dominant in number, accounts for bulges formed at median redshift . The oldest (1-wave) bulges are more compact than the youngest. Virtually all pure spheroids (i.e., those without any disk) are coetaneous with the 2-wave bulges, presenting a median redshift of formation . The two waves of bulge formation are not only distinguishable in terms of stellar ages, but also in star formation mode. All 1-wave bulges formed fast at , with typical timescales around 200 Myr. A significant fraction of the 2-wave bulges assembled more slowly, with star formation timescales as long as 1 Gyr. The results of this work suggest that the centers of massive disk-like galaxies actually harbor the oldest spheroids formed in the Universe.
Accepted for publication in ApJ. 27 pages, 18 figures
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