MOND and IMF variations in early-type galaxies from $ATLAS^{3D}$
Abstract
MOdified Newtonian dynamics (MOND) represents a phenomenological alternative to dark matter (DM) for the missing mass problem in galaxies and clusters of galaxies. We analyze the central regions of a local sample of early-type galaxies from the survey, to see if the data can be reproduced without recourse to DM. We estimate dynamical masses in the MOND context through Jeans analysis, and compare to stellar masses from stellar population synthesis. We find that the observed stellar mass--velocity dispersion relation is steeper than expected assuming MOND with a fixed stellar initial mass function (IMF) and a standard value for the acceleration parameter . Turning from the space of observables to model space, a) fixing the IMF, a universal value for cannot be fitted, while, b) fixing and leaving the IMF free to vary, we find that it is "lighter" (Chabrier-like) for low-dispersion galaxies, and "heavier" (Salpeter-like) for high dispersions. This MOND-based trend matches inferences from Newtonian dynamics with DM, and from detailed analysis of spectral absorption lines, adding to the converging lines of evidence for a systematically-varying IMF.
Keywords
Cite
@article{arxiv.1310.7606,
title = {MOND and IMF variations in early-type galaxies from $ATLAS^{3D}$},
author = {C. Tortora and A. J. Romanowsky and V. F. Cardone and N. R. Napolitano and Ph. Jetzer},
journal= {arXiv preprint arXiv:1310.7606},
year = {2015}
}
Comments
6 pages, 3 figures, accepted for publication on MNRAS Letters, typos corrected and further references added