The Effect of the Remnant Mass in Estimating Stellar Mass of Galaxies
arXiv:1310.0879 · doi:10.1093/pasj/65.5.96
Abstract
The definition of the galactic stellar mass estimated from the spectral energy distribution is ambiguous in the literature; whether the stellar mass includes the mass of the stellar remnants, i.e. white dwarfs, neutron stars, and black holes, is not well described. The remnant mass fraction in the total (living+remnant) stellar mass of a simple stellar population monotonically increases with the age of the population, and the initial mass function and metallicity affect the increasing rate. Since galaxies are composed of a number of stellar populations, the remnant mass fraction may depend on the total stellar mass of galaxies in a complex way. As a result, the shape of the stellar mass function of galaxies may change, depending on the definition of the stellar mass. In order to explore this issue, we ran a cosmological hydrodynamical simulation, and then, we have found that the remnant mass fraction indeed correlates with the total stellar mass of galaxies. However, this correlation is weak and the remnant fraction can be regarded as a constant which depends only on the redshift. Therefore, the shape of the stellar mass function is almost unchanged, but it simply shifts horizontally if the remnant mass includes or not. The shift is larger at lower redshift and it reaches 0.2-dex at z=0 for a Chabrier IMF. Since this causes a systematic difference, we should take care of the definition of the `stellar' mass, when comparing one's result with others.
Accepted for publication in PASJ
References in corpus (10)
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- A systematic variation of the stellar initial mass function in early-type galaxies
- On the self-enrichment scenario of galactic globular clusters: Constraints on the IMF
- Kinematics of the stellar halo and the mass distribution of the Milky Way using BHB stars
- Stellar mass estimates in early-type galaxies: procedures, uncertainties and models dependence
- Evidence for a Long-Standing Top-Heavy IMF in the Central Parsec of the Galaxy
- The origin of failed subhaloes and the common mass scale of the Milky Way satellite galaxies
- The impact of radio feedback from active galactic nuclei in cosmological simulations: Formation of disk galaxies
- The impact of Spitzer infrared data on stellar mass estimates - and a revised galaxy stellar mass function at 0 < z < 5
- Single Colour Diagnostics of the Mass-to-light Ratio: Predictions from Galaxy Formation Models
Cited by in corpus (6)
- A Simple Technique for Predicting High-Redshift Galaxy Evolution
- Galaxy And Mass Assembly (GAMA): Stellar mass functions by Hubble type
- Osaka Feedback Model: Isolated Disk Galaxy Simulations
- Physical Properties of UDF12 Galaxies in Cosmological simulations
- Nebular line emission from z > 7 galaxies in cosmological simulations: rest-frame UV to Optical lines
- On the (Lack of) Evolution of the Stellar Mass Function of Massive Galaxies from =1.5 to 0.4