The scatter about the "Universal" dwarf spheroidal mass profile: A kinematic study of the M31 satellites, And V and And VI
M. L. M. Collins, S. C. Chapman, R. M. Rich, R. A. Ibata, M. J. Irwin,, J. Pe\~narrubia, N. Arimoto, A. M. Brooks, A. M. N. Ferguson, G. F. Lewis, A., W. McConnachie, K. Venn

TL;DR
This study examines the kinematic properties of two M31 dwarf spheroidal galaxies, And V and And VI, comparing their mass profiles to Milky Way counterparts, revealing significant scatter and potential influences from host galaxy baryonic components.
Contribution
It provides new kinematic measurements for And V and And VI and analyzes their mass profile scatter relative to MW satellites, highlighting host galaxy baryonic effects.
Findings
And V and And VI are consistent with MW trends in velocity dispersion.
M31 satellites show a tendency towards colder kinematic regimes.
Scatter in mass profiles exceeds measurement errors, indicating intrinsic differences.
Abstract
While the satellites of the Milky Way (MW) have been shown to be largely consistent in terms of their mass contained within one half--light radius (M_{half}) with a "Universal" mass profile, a number of M31 satellites are found to be inconsistent with such relations, and seem kinematically colder in their central regions than their MW cousins. In this work, we present new kinematic and updated structural properties for two M31 dSphs, And V and And VI using data from the Keck Low Resolution Imaging Spectrograph (LRIS) and the DEep Imaging Multi-Object Spectrograph (DEIMOS) instruments and the Subaru Suprime-Cam imager. We measure systemic velocities of v_r=-393.1+/-4.2km/s and -344.8+/-2.5km/s, and dispersions of sigma_v=11.5{+5.3}{-4.4}km/s and sigma_v=9.4{+3.2}{-2.4}km/s for And V and And VI respectively, meaning these two objects are consistent with the trends in sigma_v and r_{half}…
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