The Cusp/Core Problem in Galactic Halos: Long-Slit Spectra for a Large Dwarf Galaxy Sample
Abstract
We derive inner dark matter halo density profiles for a sample of 165 low-mass galaxies using rotation curves obtained from high-quality, long-slit optical spectra assuming minimal disks and spherical symmetry. For near the galaxy center we measure median inner slopes ranging from to for various subsamples of the data. This is similar to values found by other authors, and in stark contrast to the intrinsic cusps () predicted by simulations of halo assembly in cold dark matter (CDM) cosmologies. To elucidate the relationship between and in our data, we simulate long-slit observations of model galaxies with halo shapes broadly consistent with the CDM paradigm. Simulations with and 1 recover both the observed distribution of and correlations between and primary observational parameters such as distance and disk inclination, whereas those with are marginally consistent with the data. Conversely, the hypothesis that low-mass galaxies have is rejected. While the simulations do not imply that the data favor intrinsic cusps over cores, they demonstrate that the discrepancy between and for our sample does not necessarily imply a genuine conflict between our results and CDM predictions: rather, the apparent cusp/core problem may be reconciled by considering the impact of observing and data processing techniques on rotation curves derived from long-slit spectra.
Cite
@article{arxiv.astro-ph/0502166,
title = {The Cusp/Core Problem in Galactic Halos: Long-Slit Spectra for a Large Dwarf Galaxy Sample},
author = {Kristine Spekkens and Riccardo Giovanelli and Martha P. Haynes},
journal= {arXiv preprint arXiv:astro-ph/0502166},
year = {2009}
}
Comments
17 pages, 14 figures; uses emulateapj. Accepted for publication in AJ. Minor changes made to match AJ proofs