Distinguishing the formation paths of massive compact ETGs through their internal dynamical structures
arXiv:2504.09677 · doi:10.1051/0004-6361/202453083
Abstract
Massive early-type galaxies (ETGs) are thought to form in two phases: an initial phase of rapid star formation and a later phase of mergers. A small fraction of these galaxies, called red nuggets, formed during the first phase may have survived frozen until today, experiencing no massive mergers since z~2. Nearby massive compact ETGs are considered candidates for such relic galaxies. We study the internal dynamical structures of 15 compact ETGs with existing integral field unit (IFU) observations and 79 compact ETGs from the TNG50 simulation. We dynamically decompose each galaxy into a disk, bulge, and hot inner stellar halo, for both observations and simulations. In TNG50, the luminosity fraction of the hot inner stellar halo (or the size of the spheroid, which includes the bulge and halo) strongly correlates with the galaxy merger history. The true merger-free galaxies show an extremely low fraction of a hot inner stellar halo (or an extremely compact spheroid). Although such compactness could result from the tidal stripping of satellites, tidal forces would also destroy the dynamically cold disk (if one exists) when the halo is removed. Thus, a galaxy is guaranteed to be merger-free if it has a very low fraction of the hot inner stellar halo and retains a dynamically cold disk. Comparing observed galaxies with TNG50, we identify 7 of the 15 compact ETGs, PGC 11179, UGC 3816, NGC 2767, NGC 1277, PGC 32873, PGC 12562, and PGC 70520, as true merger-free galaxies. These galaxies have compact, massive bulges, likely formed through secular heating, as supported by their TNG50 analogues.
Accepted for publication in A&A
References in corpus (28)
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Triaxial orbit based galaxy models with an application to the (apparent) decoupled core galaxy NGC 4365
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- The Majority of Compact Massive Galaxies at z~2 are Disk Dominated
- An Over-Massive Black Hole in the Compact Lenticular Galaxy NGC1277
- Superdense massive galaxies in the Nearby Universe
- CEERS Key Paper III: The Diversity of Galaxy Structure and Morphology at z=3-9 with JWST
- Galaxy And Mass Assembly (GAMA): relations of bulges, discs and spheroids
- Orbital decomposition of CALIFA spiral galaxies
- Hiding in plain sight: An abundance of compact massive spheroids in the local Universe
- The initial mass function of a massive relic galaxy
- The massive relic galaxy NGC 1277 is dark matter deficient. From dynamical models of integral-field stellar kinematics out to five effective radii
- Mass of the dynamically hot inner stellar halo predicts the ancient accreted stellar mass
- A Black Hole Mass Determination for the Compact Galaxy Mrk 1216
- The Fornax3D project: discovery of ancient massive merger events in the Fornax cluster galaxies NGC 1380 and NGC 1427
- Star formation quenching imprinted on the internal structure of naked red nuggets
- Orbit-Superposition Dynamical Modeling of Barred Galaxies
- Galaxies with monstrous black holes in galaxy cluster environments
- The first catalogue of spectroscopically confirmed red nuggets at z~0.7 from the VIPERS survey. Linking high-z red nuggets and local relics
- Disc cloaking: Establishing a lower limit to the number density of local compact massive spheroids/bulges and the potential fate of some high-z red nuggets
- The Fornax3D project: Environmental effects on the assembly of dynamically cold disks in Fornax cluster galaxies
- Relic galaxy analogues in Illustris TNG50: the formation pathways of surviving red nuggets in a cosmological simulation
- Quantifying the stellar ages of dynamically separated bulges and disks of CALIFA spiral galaxies
- Nature versus nurture: relic nature and environment of the most massive passive galaxies at
- Globular Cluster Systems of Relic Galaxies
- The formation pathways of compact elliptical galaxies
- The diverse physical origins of stars in the dynamically hot bulge: CALIFA vs. IllustrisTNG