The nearby elliptical galaxy Cen A is surrounded by a flattened system of dwarf satellite galaxies with coherent motions. Using a novel Bayesian approach, we measure the mean rotation velocity vrot and velocity dispersion σint of the satellite system. We find vrot/σint≃0.7 indicating that the satellite system has non-negligible rotational support. Using Jeans' equations, we measure a circular velocity of 258 km s−1 and a dynamical mass of 1.2×1013 M⊙ within 800 kpc. In a ΛCDM cosmological context, we find that the Cen A group has a baryon fraction Mb/M200≃0.035 and is missing ∼77% of the cosmologically available baryons. Consequently, Cen A should have a hot intergalactic medium with a mass of ∼8×1011 M⊙, which is more than ∼20 times larger than current X-ray estimates. Intriguingly, The whole Cen A group lies on the baryonic Tully-Fisher relation defined by individual rotationally supported galaxies, as expected in Milgromian dynamics (MOND) with no need of missing baryons.
@article{arxiv.2111.10306,
title = {The Cen A galaxy group: dynamical mass and missing baryons},
author = {Oliver Müller and Federico Lelli and Benoit Famaey and Marcel S. Pawlowski and Katja Fahrion and Marina Rejkuba and Michael Hilker and Helmut Jerjen},
journal= {arXiv preprint arXiv:2111.10306},
year = {2022}
}
Comments
Accepted for publication in A&A, 7 pages, 3 figures, 1 table