Structural properties of disk galaxies. II. Intrinsic shape of bulges
arXiv:1006.5449 · doi:10.1051/0004-6361/201014130
Abstract
(Abridged) The structural parameters of a magnitude-limited sample of 148 unbarred S0-Sb galaxies were analyzed to derive the intrinsic shape of their bulges. We developed a new method to derive the intrinsic shape of bulges based on the geometrical relationships between the apparent and intrinsic shapes of bulges and disks. The equatorial ellipticity and intrinsic flattening of bulges were obtained from the length of the apparent major and minor semi-axes of the bulge, twist angle between the apparent major axis of the bulge and the galaxy line of nodes, and galaxy inclination. We found that the intrinsic shape is well constrained for a subsample of 115 bulges with favorable viewing angles. A large fraction of them is characterized by an elliptical section (B/A<0.9). This fraction is 33%, 55%, and 43% if using their maximum, mean, or median equatorial ellipticity, respectively. Most are flattened along their polar axis (C<(A+B)/2). The distribution of triaxiality is strongly bimodal. This bimodality is driven by bulges with Sersic index n>2, or equivalently, by the bulges of galaxies with a bulge-to-total ratio B/T>0.3. In particular, bulges with n\leq2 and with B/T\leq0.3 show a larger fraction of oblate axisymmetric (or nearly axisymmetric) bulges, a smaller fraction of triaxial bulges, and fewer prolate axisymmetric (or nearly axisymmetric) bulges with respect to bulges with n>2 and with B/T>0.3, respectively. According to predictions of the numerical simulations of bulge formation, bulges with n\leq2, which show a high fraction of oblate axisymmetric (or nearly axisymmetric) shapes and have B/T\leq0.3, could be the result of dissipational minor mergers. Both major dissipational and dissipationless mergers seem to be required to explain the variety of shapes found for bulges with n>2 and B/T>0.3.
16 pages, 12 figures; accepted for publication in A&A
References in corpus (13)
- The SAURON project -- X. The orbital anisotropy of elliptical and lenticular galaxies: revisiting the (V/sigma,epsilon) diagram with integral-field stellar kinematics
- Kinematic Structure of Merger Remnants
- The Structure of Classical Bulges And Pseudobulges: The Link Between Pseudobulges And Sersic Index
- The SAURON project - VII. Integral-field absorption and emission-line kinematics of 24 spiral galaxy bulges
- Dynamical modelling of luminous and dark matter in 17 Coma early-type galaxies
- Dearth of dark matter or massive dark halo? Mass-shape-anisotropy degeneracies revealed by NMAGIC dynamical models of the elliptical galaxy NGC 3379
- A Connection Between Bulge Properties and the Bimodality of Galaxies
- The Millennium Galaxy Catalogue: The luminosity functions of bulges and discs and their implied stellar mass densities
- Recovering the intrinsic shape of early-type galaxies
- Structure Formation Inside Triaxial Dark Matter Halos: Galactic Disks, Bulges and Bars
- The stellar mass distribution in early-type disk galaxies: surface photometry and bulge-disk decompositions
- Structure and dynamics of galaxies with a low surface brightness disc. I. The stellar and ionised-gas kinematics
- Intrinsic Axis Ratio Distribution of Early-type Galaxies From Sloan Digital Sky Survey
Cited by in corpus (4)
- Photometric scaling relations of lenticular and spiral galaxies
- Photometric characterization of a well defined sample of isolated galaxies in the context of the AMIGA project
- Structure and dynamics of galaxies with a low surface brightness disc. I. The stellar and ionised-gas kinematics
- The Shapes of BCGs and normal Ellipticals in Nearby Clusters