We present high resolution two-dimensional velocity fields from integral field spectroscopy along with derived rotation curves for eleven low surface brightness galaxies. We fit NFW and pseudo-isothermal halo models to the new data combined with previous long-slit and HI data. In most cases we find the pseudo-isothermal halo to better represent the data than the NFW halo, as the NFW concentrations are often lower than expected for a LambdaCDM cosmology. We also compare our results to previous studies and find that including the new two-dimensional optical data does not significantly alter the halo parameters, but does decrease the uncertainties by roughly a factor of 2
We present mock DensePak Integral Field Unit (IFU) velocity fields, rotation curves and halo fits fo...
Low Surface Brightness (LSB) galaxies are dominated by dark matter, and their rotation curves thus ...
Dark-matter-only simulations predict that dark matter halos have cusp-like inner density profiles, w...
We present high resolution two dimensional velocity fields from integral field spectroscopy along w...
19 pages, 13 color figures; High resolution images at http://www.astro.umd.edu/~kuzio/PAPERS/dpakdat...
This dissertation investigates the behavior of cold dark matter (CDM) on galaxy scales. We present ...
2 pages, 1 figure, to appear in the XXIst IAP Colloquium "Mass Profiles and Shapes of Cosmological S...
We present high resolution two dimensional velocity fields from integral field spectroscopy along wi...
2 pages, 1 figure, to appear in the XXIst IAP Colloquium "Mass Profiles and Shapes of Cosmological S...
We present high-resolution optical velocity fields from DensePak integral field spectroscopy, along ...
We use a set of high-resolution cosmological N-body simulations to investigate the inner mass profil...
We use a set of high-resolution cosmological N-body simulations to investigate the inner mass profil...
We use a set of high-resolution cosmological N-body simulations to investigate the inner mass profil...
We re-examine the disk-halo decompositions of the rotation curves of low surface brightness (LSB) ga...
We use a set of high-resolution cosmological N-body simulations to investigate the inner mass profil...
We present mock DensePak Integral Field Unit (IFU) velocity fields, rotation curves and halo fits fo...
Low Surface Brightness (LSB) galaxies are dominated by dark matter, and their rotation curves thus ...
Dark-matter-only simulations predict that dark matter halos have cusp-like inner density profiles, w...
We present high resolution two dimensional velocity fields from integral field spectroscopy along w...
19 pages, 13 color figures; High resolution images at http://www.astro.umd.edu/~kuzio/PAPERS/dpakdat...
This dissertation investigates the behavior of cold dark matter (CDM) on galaxy scales. We present ...
2 pages, 1 figure, to appear in the XXIst IAP Colloquium "Mass Profiles and Shapes of Cosmological S...
We present high resolution two dimensional velocity fields from integral field spectroscopy along wi...
2 pages, 1 figure, to appear in the XXIst IAP Colloquium "Mass Profiles and Shapes of Cosmological S...
We present high-resolution optical velocity fields from DensePak integral field spectroscopy, along ...
We use a set of high-resolution cosmological N-body simulations to investigate the inner mass profil...
We use a set of high-resolution cosmological N-body simulations to investigate the inner mass profil...
We use a set of high-resolution cosmological N-body simulations to investigate the inner mass profil...
We re-examine the disk-halo decompositions of the rotation curves of low surface brightness (LSB) ga...
We use a set of high-resolution cosmological N-body simulations to investigate the inner mass profil...
We present mock DensePak Integral Field Unit (IFU) velocity fields, rotation curves and halo fits fo...
Low Surface Brightness (LSB) galaxies are dominated by dark matter, and their rotation curves thus ...
Dark-matter-only simulations predict that dark matter halos have cusp-like inner density profiles, w...