IMPRINTS OF RADIAL MIGRATION ON THE MILKY WAY’S METALLICITY DISTRIBUTION FUNCTIONS

  • Loebman S
  • Debattista V
  • Nidever D
  • et al.
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Abstract

Recent analysis of the SDSS-III/Apache Point Observatory Galactic Evolution Experiment (APOGEE) Data Release 12 stellar catalog has revealed that the Milky Way’s (MW) metallicity distribution function (MDF) changes shape as a function of radius, transitioning from being negatively skewed at small Galactocentric radii to positively skewed at large Galactocentric radii. Using a high-resolution, N -body+SPH simulation, we show that the changing skewness arises from radial migration—metal-rich stars form in the inner disk and subsequently migrate to the metal-poorer outer disk. These migrated stars represent a large fraction ( ) of the stars in the outer disk; they populate the high-metallicity tail of the MDFs and are, in general, more metal-rich than the surrounding outer disk gas. The simulation also reproduces another surprising APOGEE result: the spatially invariant high-[ α /Fe] MDFs. This arises in the simulation from the migration of a population formed within a narrow range of radii (3.2 ±1.2 kpc) and time (8.8 ± 0.6 Gyr ago), rather than from spatially extended star formation in a homogeneous medium at early times. These results point toward the crucial role radial migration has played in shaping our MW.

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Loebman, S. R., Debattista, V. P., Nidever, D. L., Hayden, M. R., Holtzman, J. A., Clarke, A. J., … Valluri, M. (2016). IMPRINTS OF RADIAL MIGRATION ON THE MILKY WAY’S METALLICITY DISTRIBUTION FUNCTIONS. The Astrophysical Journal Letters, 818(1), L6. https://doi.org/10.3847/2041-8205/818/1/l6

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