Signatures of accretion events in the halos of early-type galaxies from comparing PNe and GCs kinematics
L. Coccato (1), M. Arnaboldi (1), O. Gerhard (2) ((1) European, Southern Observatory, Garching bei Muenchen, Germany, (2) Max-Planck-Institut, fuer Extraterrestrische Physik, Garching bei Muenchen, Germany.)

TL;DR
This study compares the kinematic signatures of planetary nebulae and globular clusters in three early-type galaxies, revealing differences that suggest varied accretion histories and ongoing dynamical evolution.
Contribution
It provides the first detailed comparison of PNe and GCs kinematics in multiple galaxies, highlighting their different accretion and dynamical states.
Findings
PNe and GCs show different rotational properties and velocity distributions.
Outer regions of galaxies exhibit deviations from dynamical equilibrium.
Differences suggest varied accretion times and mechanisms for PNe and GCs.
Abstract
We have compared the halo kinematics traced by globular clusters (GCs) and planetary nebulae (PNe) for two elliptical galaxies in the Fornax and Virgo clusters NGC 1399 and NGC 4649, and for the merger remnant NGC 5128 (Centaurus A). We find differences in the rotational properties of the PN, red GC, and blue GC systems in all these three galaxies. NGC 1399 PNe and GCs show line of sight velocity distributions in specific regions that are significantly different, based on Kolmogorov-Smirnov tests. The PN system shows multi-spin components, with nearly opposite direction of rotation in the inner and the outer parts. The GCs velocity field is not point-symmetric in the outer regions of the galaxy, indicating that the system has not reached dynamical equilibrium yet. In NGC 4649 PNe, red and blue GCs have different rotation axes and rotational velocities. Finally, in NGC 5128 both PNe and…
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