Rotation of the bulge components of disk galaxies
Generate an AI Snapshot to get a quick, structured summary of this paper.
A concise AI-generated summary of the paper will appear here once you click Generate AI Snapshot.
Abstract
view Abstract Citations (378) References (69) Co-Reads Similar Papers Volume Content Graphics Metrics Export Citation NASA/ADS Rotation of the bulge components of disk galaxies. Kormendy, J. ; Illingworth, G. Abstract In order to investigate dynamical differences between bulges and elliptical galaxies, absorption-line velocities and velocity dispersions were measured along several slit positions in the bulge components of four edge-on S0-Sb galaxies. The present bulges rotate more rapidly than bright ellipticals. Their kinematic properties are strikingly uniform and, in many cases, are well described by dynamical models of rotationally flattened oblate spheroids with isotropic residual velocities. Given that the disk potential also contributes to the flattening, little or no anisotropy is required to explain the shapes of bulges. The observation that bulges rotate rapidly suggests that they were formed by a dissipational process. In general, the detailed behavior of the two-dimensional velocity fields is consistent with classical dissipational collapse theories of galaxy formation. Rotation, dispersion, and line strength data for the sample galaxies are given. Publication: The Astrophysical Journal Pub Date: May 1982 DOI: 10.1086/159923 Bibcode: 1982ApJ...256..460K Keywords: Astronomical Spectroscopy; Disk Galaxies; Elliptical Galaxies; Galactic Bulge; Galactic Rotation; Anisotropy; Bulging; Data Reduction; Data Sampling; Kinematics; Astronomy full text sources ADS | data products SIMBAD (9) NED (4)
