The Role of Dissipation in the Scaling Relations of Cosmological Merger Remnants
arXiv:1101.4225 · doi:10.1111/j.1365-2966.2011.18926.x
Abstract
There are strong correlations between the three structural properties of elliptical galaxies -- stellar mass, velocity dispersion and size -- in the form of a tight "fundamental plane" and a "scaling relation" between each pair. Major mergers of disk galaxies are assumed to be a mechanism for producing ellipticals, but semi-analytic galaxy formation models (SAM) have encountered apparent difficulties in reproducing the observed slope and scatter of the size-mass relation. We study the scaling relations of merger remnants using progenitor properties from two SAMs. We apply a simple merger model that includes gas dissipation and star formation based on theoretical considerations and simulations. Combining the SAMs and the merger model allows calculation of the structural properties of the remnants of major mergers that enter the population of elliptical galaxies at a given redshift. Without tuning the merger model parameters for each SAM, the results roughly match the slope and scatter in the observed scaling relations and their evolution in the redshift range . Within this model, the observed scaling relations, including the tilt of the fundamental plane relative to the virial plane, result primarily from the decrease of gas fraction with increasing progenitor mass. The scatter in the size-mass relation of the remnants is reduced from that of the progenitors because of a correlation between progenitor size and gas fraction at a given mass.
in press
References in corpus (15)
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- The effect of galaxy mass ratio on merger--driven starbursts
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- Size evolution of the most massive galaxies at 1.7<z<3 from GOODS NICMOS survey imaging
- Ages and metallicities of early-type galaxies in the SDSS: new insight into the physical origin of the colour-magnitude and the Mg2-sigmaV relations
- Multiple minor mergers: formation of elliptical galaxies and constraints for the growth of spiral disks
- The influence of gas on the structure of merger remnants
- Dissipation and the Fundamental Plane: Observational Tests
- The population of early-type galaxies at 1<z<2 - New clues on their formation and evolution
- The importance of dry and wet merging on the formation and evolution of elliptical galaxies
- The Dissipative Merger Progenitors of Elliptical Galaxies
- Toward Equations of Galactic Structure
- M/L and Color Evolution for A Deep Sample of M* Cluster Galaxies at z~1: The Formation Epoch and the Tilt of the Fundamental Plane
- Predicting the Properties of the Remnants of Dissipative Galaxy Mergers
- Loss of star forming gas in SDSS galaxies
Cited by in corpus (14)
- Star-Forming Galaxies at Cosmic Noon
- Massive Compact Galaxies with High-Velocity Outflows: Morphological Analysis and Constraints on AGN Activity
- Wet Compaction to a Blue Nugget: a Critical Phase in Galaxy Evolution
- Black Hole Growth and Feedback in Isolated Romulus25 Dwarf Galaxies
- The build-up of pseudobulges in a hierarchical universe
- Galaxy sizes and the galaxy-halo connection -- I: the remarkable tightness of the size distributions
- Modeling the Ages and Metallicities of Early-Type Galaxies in Fundamental Plane Space
- The Evolution of Sizes and Specific Angular Momenta in Hierarchical Models of Galaxy Formation and Evolution
- The Physical Origin of the Mass-Size Relation and Its Scatter of Disk Galaxies
- The weak dependence of velocity dispersion on disk fractions, mass-to-light ratio and redshift: Implications for galaxy and black hole evolution
- The relationship between galaxy and halo sizes in the Illustris and IllustrisTNG simulations
- PRIMER: JWST/MIRI reveals the evolution of star-forming structures in galaxies at z<2.5
- Compact dust-obscured star-formation and the origin of the galaxy bimodality
- Size-Mass Relation Shows Its Colours: Contrasting Physical Imprints of Galaxy Evolution in Rest-Frame UV and Optical