Spin-up of massive classical bulges during secular evolution
arXiv:1505.04508 · doi:10.1051/0004-6361/201527566
Abstract
Classical bulges in spiral galaxies are known to rotate but the origin of this observed rotational motion is not well understood. It has been shown recently that a low-mass classical bulge (ClB) in a barred galaxy can acquire rotation from absorbing a significant fraction of the angular momentum emitted by the bar. Our aim here is to investigate whether bars can spin up also more massive ClBs during the secular evolution of the bar, and to study the kinematics and dynamics of these ClBs. We use a set of self-consistent N-body simulations to study the interaction of ClBs with a bar that forms self-consistently in the disk. We use orbital spectral analysis to investigate the angular momentum gain by the classical bulge stars. We show that the ClBs gain, on average, about 2 - 6% of the disk's initial angular momentum within the bar region. Most of this angular momentum gain occurs via low-order resonances, particularly 5:2 resonant orbits. A density wake forms in the ClB which corotates and aligns with the bar at the end of the evolution. The spin-up process creates a characteristic linear rotation profile and mild tangential anisotropy in the ClB. The induced rotation is small in the centre but significant beyond bulge half mass radii, where it leads to mass-weighted , and reaches a local at around the scale of the bar. The resulting is tightly correlated with the ratio of the bulge size to the bar size. In all models, a box/peanut bulge forms suggesting that composite bulges may be common. Bar-bulge resonant interaction in barred galaxies can provide some spin up of massive ClBs, but the process appears to be less efficient than for low-mass ClBs. Further angular momentum transfer due to nuclear bars or gas inflow would be required to explain the observed rotation if it is not primordial.
11 Pages, 14 figures; accepted for publication by A & A
References in corpus (13)
- Forming Disk Galaxies in Lambda CDM Simulations
- The SAURON project -- X. The orbital anisotropy of elliptical and lenticular galaxies: revisiting the (V/sigma,epsilon) diagram with integral-field stellar kinematics
- Structural Properties of Pseudo-Bulges, Classical Bulges and Elliptical Galaxies: an SDSS Perspective
- Dynamics of Barred Galaxies
- Bulge Formation by the Coalescence of Giant Clumps in Primordial Disk Galaxies
- Multiple minor mergers: formation of elliptical galaxies and constraints for the growth of spiral disks
- Bars in Disk-Dominated and Bulge-Dominated Galaxies at z~0: New Insights from ~3600 SDSS Galaxies
- Properties of Bars and Bulges in the Hubble Sequence
- Composite Bulges: The Coexistence of Classical Bulges and Disky Pseudobulges in S0 and Spiral Galaxies
- Early formation of massive, compact, spheroidal galaxies with classical profiles by violent disc instability or mergers
- Initial conditions for disc galaxies
- Resonances in Barred Galaxies
- A bar in the inner halo of barred galaxies I. Structure and kinematics of a representative model
Cited by in corpus (21)
- Chemodynamical history of the Galactic Bulge
- The Gaia-ESO Survey: Exploring the complex nature and origins of the Galactic bulge populations
- A Study of the Effect of Bulges on Bar Formation in Disk galaxies
- The Bulge Radial Velocity Assay for RR Lyrae stars (BRAVA-RR) DR2: a Bimodal Bulge?
- The Milky Way without X: An alternative interpretation of the double red clump in the Galactic bulge
- Stellar halo substructure generated by bar resonances
- Sculpting Andromeda -- made-to-measure models for M31's bar and composite bulge: dynamics, stellar and dark matter mass
- Relations among structural parameters in barred galaxies with a direct measurement of bar pattern speed
- New insight on the origin of the double red clump in the Milky Way bulge
- Bars & boxy/peanut bulges in thin & thick discs: I. Morphology and line-of-sight velocities of a fiducial model
- The Effect of Bulge Mass on Bar Pattern Speed in Disk Galaxies
- Galaxy Flybys: Evolution of the Bulge, Disk, and Spiral Arms
- The Effect of Dark Matter Halo Shape on Bar Buckling and Boxy/Peanut Bulges
- Comparing bulge RR Lyrae stars with bulge giants -- Insight from 3D kinematics
- Which bulges are favoured by barred S0 galaxies?
- Unravelling stellar populations in the Andromeda Galaxy
- Growth of disc-like pseudo-bulges in SDSS DR7 since z = 0.1
- Deciphering the Milky Way disc formation time encrypted in the bar chrono-kinematics
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data III. Panoramic view of the bulge
- Disclosing Submillimeter Galaxy Formation: Mergers or Secular Evolution?
- Dynamical properties of high-[Mg/Fe] stars in the Milky Way bar region