Modeling the Gas Flow in the Bar of NGC 1365
arXiv:0710.5286 · doi:10.1086/524940
Abstract
We present new observations of the strongly-barred galaxy NGC 1365, including new photometric images and Fabry-Perot spectroscopy, as well as a detailed re-analysis of the neutral hydrogen observations from the VLA archive. We find the galaxy to be at once remarkably bi-symmetric in its I-band light distribution and strongly asymmetric in the distribution of dust and in the kinematics of the gas in the bar region. The velocity field mapped in the H-alpha line reveals bright HII regions with velocities that differ by 60 to 80 km/s from that of the surrounding gas, which may be due to remnants of infalling material. We have attempted hydrodynamic simulations of the bar flow to estimate the separate disk and halo masses, using two different dark matter halo models and covering a wide range of mass-to-light ratios (Upsilon) and bar pattern speeds (Omega_p). None of our models provides a compelling fit to the data, but they seem most nearly consistent with a fast bar, corotation at sim 1.2r_B, and Upsilon_I simeq 2.0 +- 1.0, implying a massive, but not fully maximal, disk. The fitted dark halos are unusually concentrated, a requirement driven by the declining outer rotation curve.
43 pages, 15 figures, accepted to appear in ApJ
References in corpus (5)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Dynamics of Barred Galaxies
- A Revised Model for the Formation of Disk Galaxies: Low Spin and Dark-Halo Expansion
- The mass distribution in early-type disk galaxies: declining rotation curves and correlations with optical properties
- Detection of CO Hotspots Associated with Young Clusters in the Southern Starburst Galaxy NGC 1365
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- Detailed HI kinematics of Tully-Fisher calibrator galaxies
- Testing Verlinde's Emergent Gravity with the Radial Acceleration Relation
- Near-infrared observations of star formation and gas flows in the NUGA galaxy NGC 1365
- Constraining the dark matter content of NGC 1291 using hydrodynamic gas response simulations
- The RINGS Survey I: Halpha and HI Velocity Maps of Galaxy NGC 2280