English

The Surface Density Profile of the Galactic Disk from the Terminal Velocity Curve

Astrophysics of Galaxies 2016-01-13 v1

Abstract

The mass distribution of the Galactic disk is constructed from the terminal velocity curve and the mass discrepancy-acceleration relation. Mass models numerically quantifying the detailed surface density profiles are tabulated. For R0=8R_0 = 8 kpc, the models have stellar mass 5<M<6×10105 < M_* < 6 \times 10^{10} M_{\odot}, scale length 2.0Rd2.92.0 \le R_d \le 2.9 kpc, LSR circular velocity 222Θ0233222 \le \Theta_0 \le 233 km s1^{-1}, and solar circle stellar surface density 34Σd(R0)6134 \le \Sigma_d(R_0) \le 61 M_{\odot} pc2^{-2}. The present inter-arm location of the solar neighborhood may have a somewhat lower stellar surface density than average for the solar circle. The Milky Way appears to be a normal spiral galaxy that obeys scaling relations like the Tully-Fisher relation, the size-mass relation, and the disk maximality-surface brightness relation. The stellar disk is maximal, and the spiral arms are massive. The bumps and wiggles in the terminal velocity curve correspond to known spiral features (e.g., the Centaurus Arm is a 50%\sim 50\% overdensity). The rotation curve switches between positive and negative over scales of hundreds of parsecs. The rms amplitude \langle|dV/dRdV/dR2|^2\rangle1/214^{1/2} \approx 14 km s1^{-1} kpc1^{-1}, implying that commonly neglected terms in the Jeans equations may be non-negligible. The spherically averaged local dark matter density is ρ0,DM0.009\rho_{0,DM} \approx 0.009 M_{\odot} pc3^{-3} (0.3 GeV cm3^{-3}). Adiabatic compression of the dark matter halo may help reconcile the Milky Way with the cc-V200V_{200} relation expected in Λ\LambdaCDM while also helping to mitigate the too big to fail problem, but it remains difficult to reconcile the inner bulge/bar dominated region with a cuspy halo. We note that NGC 3521 is a near twin to the Milky Way, having a similar luminosity, scale length, and rotation curve.

Keywords

Cite

@article{arxiv.1511.06387,
  title  = {The Surface Density Profile of the Galactic Disk from the Terminal Velocity Curve},
  author = {Stacy S. McGaugh},
  journal= {arXiv preprint arXiv:1511.06387},
  year   = {2016}
}

Comments

Accepted for publication in the Astrophysical Journal. 20 pages, 14 figures. Model data available at http://astroweb.case.edu/ssm/models/ See http://astroweb.case.edu/ssm/models/MWaddenda2015.html for further discussion of fit statistics, etc