The PN.S Elliptical Galaxy Survey: the dark matter in NGC 4494
N.R. Napolitano, A.J. Romanowsky, L. Coccato, M. Capaccioli, N.G., Douglas, E. Noordermeer, O. Gerhard, M. Arnaboldi, F. De Lorenzi, K. Kuijken,, M.R. Merrifield, E. O'Sullivan, A. Cortesi, P. Das, K.C. Freeman

TL;DR
This study uses planetary nebulae and stellar kinematics to model the dark matter distribution in NGC 4494, revealing a low-density dark matter halo and contributing to understanding galaxy halo diversity.
Contribution
It provides detailed dynamical modeling of NGC 4494 using multiple methods, highlighting a low-concentration dark matter halo and implications for galaxy formation theories.
Findings
Dark matter is present but has low central density.
The galaxy's halo shows a radially anisotropic stellar distribution.
Results suggest a pattern of low-concentration halos in intermediate-luminosity galaxies.
Abstract
We present new Planetary Nebula Spectrograph observations of the ordinary elliptical galaxy NGC 4494, resulting in positions and velocities of 255 PNe out to 7 effective radii (25 kpc). We also present new wide-field surface photometry from MMT/Megacam, and long-slit stellar kinematics from VLT/FORS2. The spatial and kinematical distributions of the PNe agree with the field stars in the region of overlap. The mean rotation is relatively low, with a possible kinematic axis twist outside 1 Re. The velocity dispersion profile declines with radius, though not very steeply, down to ~70 km/s at the last data point. We have constructed spherical dynamical models of the system, including Jeans analyses with multi-component LCDM-motivated galaxies as well as logarithmic potentials. These models include special attention to orbital anisotropy, which we constrain using fourth-order velocity…
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