Comparing the properties of the X-shaped bulges of NGC 4710 and the Milky Way with MUSE
arXiv:1603.02546 · doi:10.1051/0004-6361/201527806
Abstract
We used the new ESO VLT instrument MUSE to obtain spectral and imaging coverage of NGC 4710. The wide area and excellent sampling of the MUSE integral field spectrograph allows us to investigate the dynamical properties of the X-shaped bulge of NGC 4710 and compare it with the properties of the Milky Way's own X-shaped bulge. We measured the radial velocities, velocity dispersion, and stellar populations using a penalized pixel full spectral fitting technique adopting simple stellar populations models, on a 1' x 1' area centred on the bulge of NGC 4710. We have constructed the velocity maps of the bulge of NGC 4710 and we investigated the presence of vertical metallicity gradients. These properties were compared to those of the Milky Way bulge and as well as to a simulated galaxy with boxy/peanut bulge. We find the line-of-sight velocity maps and 1D rotation curves of the bulge of NGC 4710 to be remarkably similar to those of the Milky Way bulge. Some specific differences that were identified are in good agreement with the expectations from variations in the bar orientation angle. The bulge of NGC 4710 has a boxy-peanut morphology with a pronounced X-shape, showing no indication of any additional spheroidally distributed bulge population, in which we measure a vertical metallicity gradient of 0.35 dex/kpc. The general properties of NGC 4710 are very similar to those observed in the MW bulge. However, it has been suggested that the MW bulge has an additional component that is comprised of the oldest, most metal-poor stars and which is not part of the boxy-peanut bulge structure. Such a population is not observed in NGC 4710, but could be hidden in the integrated light we observed.
Accepted for publication in A&A
References in corpus (14)
- Evolutionary Stellar Population Synthesis with MILES. Part I: The Base Models and a New Line Index System
- The Structure of the Milky Way's Bar Outside the Bulge
- A Classical Morphological Analysis of Galaxies in the Spitzer Survey of Stellar Structure in Galaxies (S4G)
- Image Decomposition of Barred Galaxies and AGN Hosts
- The Gaia-ESO Survey: metallicity and kinematic trends in the Milky Way bulge
- K-Band Observations of Boxy Bulges. I. Morphology and Surface Brightness Profiles
- Kinematics at the Edge of the Galactic Bulge: Evidence for Cylindrical Rotation
- Stellar density profile and mass of the Milky Way Bulge from VVV data
- The formation of stellar nuclear discs in bar-induced gas inflows
- Secular- and merger-built bulges in barred galaxies
- 2D kinematic signatures of boxy/peanut bulges
- MUSE tells the story of NGC 4371: The dawning of secular evolution
- The VVV Survey reveals classical Cepheids tracing a young and thin stellar disk across the Galaxy's bulge
- Observed properties of boxy/peanut/barlens bulges
Cited by in corpus (12)
- The Fornax 3D project: unveiling the thick disk origin in FCC 170: signs of accretion?
- Formation, vertex deviation and age of the Milky Way's bulge: input from a cosmological simulation with a late-forming bar
- Stars behind bars II: A cosmological formation scenario for the Milky Way's central stellar structure
- Weighing the two stellar components of the Galactic Bulge
- Chemically-dissected rotation curves of the Galactic Bulge from Main Sequence proper motions
- The Halos and Environments of Nearby Galaxies (HERON) II: The outer structure of edge-on galaxies
- Blanco DECam Bulge Survey (BDBS) III: A new view of the double red clump in the Milky Way bulge through luminosity and color distribution
- Peanut-shaped metallicity distributions in bulges of edge-on galaxies: the case of NGC 4710
- Testing for relics of past strong buckling events in edge-on galaxies: Simulation predictions and data from SG
- Predicted Trends in Milky Way Bulge Proper Motion Rotation Curves: future Prospects for HST and LSST
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data III. Panoramic view of the bulge
- The chemical and spatial variations of the bulge's velocity ellipsoids