Skip to content

Disk M Dwarf Luminosity Function From HST Star Counts

Andrew Gould, John N. Bahcall, Chris Flynn

astro-pharXiv:astro-ph/9505087

Abstract

We study a sample of 257 Galactic disk M dwarfs (8<MV<18.5) found in images obtained using HST. These include 192 stars in 22 fields imaged with the repaired WFC2 with mean limiting mag I=23.7 and 65 stars in 162 fields imaged with the pre-repair Planetary Camera with mean limiting mag V=21.3. We find that the disk luminosity function (LF) drops sharply for MV>12 (M<0.25 ), decreasing by a factor 3 by MV~14 (M~0.14). This decrease in the LF is in good agreement with the ground-based photometric study of nearby stars by Stobie et al. (1989), and in mild conflict with the most recent LF measurements based on local parallax stars by Reid et al. (1995). The local LF of the faint Galactic disk stars can be transformed into a local mass function using an empirical mass-MV relation. The mass function can be represented analytically over the mass range 0.1<M<1.6 by (ϕ)=-1.35-1.34(M/)-1.85 [(M/)]2 where ϕis the number density per logarithmic unit of mass. The total column density of M stars is only ΣM=11.8 1.8-2, implying a total `observed' disk column density of Σ~=39-2, lower than previously believed, and also lower than all estimates with which we are familiar of the dynamically inferred mass of the disk. The measured scale length for the M-star disk is 3.0 0.4 kpc. The optical depth to microlensing toward the LMC by the observed stars in the Milky Way disk is τ~1x10-8, compared to the observed optical depth found in ongoing experiments τ~ 10-7. The M-stars show evidence for a population with characteristics intermediate between thin disk and spheroid populations. Approximating what may be a continuum of populations by two separate component, we find characteristic exponential scale heights of ~210 pc and ~740 pc.

Create a lesson