A New Approach to Detailed Structural Decomposition from the SPLASH and PHAT Surveys: Kicked-up Disk Stars in the Andromeda Galaxy?
arXiv:1310.4179 · doi:10.1088/0004-637X/779/2/103
Abstract
We characterize the bulge, disk, and halo subcomponents in the Andromeda galaxy (M31) over the radial range 4 < R_proj < 225 kpc. The cospatial nature of these subcomponents renders them difficult to disentangle using surface brightness (SB) information alone, especially interior to ~20 kpc. Our new decomposition technique combines information from the luminosity function (LF) of over 1.5 million bright (20 < m_814W < 22) stars from the Panchromatic Hubble Andromeda Treasury (PHAT) survey, radial velocities of over 5000 red giant branch stars in the same magnitude range from the Spectroscopic and Photometric Landscape of Andromeda's Stellar Halo (SPLASH) survey, and integrated I-band SB profiles from various sources. We use an affine-invariant Markov chain Monte Carlo algorithm to fit an appropriate toy model to these three data sets. The bulge, disk, and halo SB profiles are modeled as a Sersic, exponential, and cored power-law, respectively, and the LFs are modeled as broken power-laws. We present probability distributions for each of 32 parameters describing the SB profiles and LFs of the three subcomponents. We find that the number of stars with a disk-like LF is ~5% larger than the the number with disk-like (dynamically cold) kinematics, suggesting that some stars born in the disk have been dynamically heated to the point that they are kinematically indistinguishable from halo members. This is the first kinematical evidence for a "kicked-up disk" halo population in M31. The fraction of kicked-up disk stars is consistent with that found in simulations. We also find evidence for a radially varying disk LF, consistent with a negative metallicity gradient in the stellar disk.
25 pages, 20 figures, accepted for publication in ApJ
References in corpus (11)
- Two Stellar Components in the Halo of the Milky Way
- The SAURON project -- X. The orbital anisotropy of elliptical and lenticular galaxies: revisiting the (V/sigma,epsilon) diagram with integral-field stellar kinematics
- Inferring the Andromeda Galaxy's mass from its giant southern stream with Bayesian simulation sampling
- Global Properties of M31's Stellar Halo from the SPLASH Survey. I. Surface Brightness Profile
- A New Method for Isolating M31 Red Giant Stars: The Discovery of Stars out to a Radial Distance of 165 Kiloparsecs
- Unravelling the mystery of the M31 bar
- The Nature and Origin of Substructure in the Outskirts of M31. I. Surveying the Stellar Content with HST/ACS
- Unveiling the Boxy Bulge and Bar of the Andromeda Spiral Galaxy
- Was the Andromeda Stream Produced by a Disk Galaxy?
- A Revised LCDM Mass Model For The Andromeda Galaxy
- Identifying Contributions to the Stellar Halo from Accreted, Kicked-Out, and In Situ Populations
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- Recent Results from SPLASH: Chemical Abundances and Kinematics of Andromeda's Stellar Halo