Local Group Dwarf Elliptical Galaxies: II. Stellar Kinematics to Large Radii in NGC 147 and NGC 185
M. Geha, R. P. van der Marel, P. Guhathakurta, K. M. Gilbert, J., Kalirai, E. N. Kirby

TL;DR
This study provides extensive kinematic and metallicity profiles for NGC 147 and NGC 185, revealing significant internal rotation and dark matter presence, challenging previous assumptions about dwarf elliptical galaxies.
Contribution
It presents the most extensive spectroscopic radial coverage for these galaxies, demonstrating that dwarf ellipticals often exhibit internal rotation and require dark matter in their dynamical models.
Findings
Both galaxies show significant internal rotation.
Velocity dispersions decrease gently with radius.
Dark matter is necessary to explain kinematic profiles.
Abstract
We present kinematic and metallicity profiles for the M31 dwarf elliptical (dE) satellite galaxies NGC 147 and NGC 185. The profiles represent the most extensive spectroscopic radial coverage for any dE galaxy, extending to a projected distance of eight half-light radii (8 r_eff = 14'). We achieve this coverage via Keck/DEIMOS multislit spectroscopic observations of 520 and 442 member red giant branch stars in NGC 147 and NGC 185, respectively. In contrast to previous studies, we find that both dEs have significant internal rotation. We measure a maximum rotational velocity of 17+/-2 km/s for NGC 147 and 15+/-5 km/s for NGC 185. The velocity dispersions decrease gently with radius with an average dispersion of 16+/-1 km/s for NGC 147 and 24+/-1 km/s for NGC 185. Both dEs have internal metallicity dispersions of 0.5 dex, but show no evidence for a radial metallicity gradient. We…
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