Radial Dependence of the Pattern Speed of M51
arXiv:0807.1902 · doi:10.1086/591516
Abstract
The grand-design spiral galaxy M51 has long been a crucial target for theories of spiral structure. Studies of this iconic spiral can address the question of whether strong spiral structure is transient (e.g. interaction-driven) or long-lasting. As a clue to the origin of the structure in M51, we investigate evidence for radial variation in the spiral pattern speed using the radial Tremaine-Weinberg (TWR) method. We implement the method on CO observations tracing the ISM-dominant molecular component. Results from the method's numerical implementation--combined with regularization, which smooths intrinsically noisy solutions--indicate two distinct patterns speeds inside 4 kpc at our derived major axis PA=170 deg., both ending at corotation and both significantly higher than the conventionally adopted global value. Inspection of the rotation curve suggests that the pattern speed interior to 2 kpc lacks an ILR, consistent with the leading structure seen in HST near-IR observations. We also find tentative evidence for a lower pattern speed between 4 and 5.3 kpc measured by extending the regularized zone. As with the original TW method, uncertainty in major axis position angle (PA) is the largest source of error in the calculation; in this study, where δPA=+/-5 deg. a ~20% error is introduced to the parameters of the speeds at PA=170 deg. Accessory to this standard uncertainty, solutions with PA=175 deg. (also admitted by the data) exhibit only one pattern speed inside 4 kpc, and we consider this circumstance under the semblance of a radially varying PA.
14 pages in emulateapj format, 12 figures, accepted for publication in ApJ
References in corpus (4)
Cited by in corpus (25)
- Dawes Review 4: Spiral Structures in Disc Galaxies
- The Blueshifting and Baldwin effects for the [OIII] 5007 Emission Line in Type 1 Active Galactic Nuclei
- Gas and Stellar Motions and Observational Signatures of Co-Rotating Spiral Arms
- The PdBI Arcsecond Whirlpool Survey (PAWS). The Role of Spiral Arms in Cloud and Star Formation
- The morphology of the Milky Way - II. Reconstructing CO maps from disc galaxies with live stellar distributions
- Characteristics of Spiral Arms in Late-type Galaxies
- Kinematic clues to bar evolution for galaxies in the local universe: why the fastest rotating bars are rotating most slowly
- Applying the Tremaine-Weinberg Method to Nearby Galaxies: Stellar Mass-Based Pattern Speeds, and Comparisons with ISM Kinematics
- Gas and stellar spiral arms and their offsets in the grand-design spiral galaxy M51
- Geometric Offsets Across Spiral Arms in M51: Nature of Gas and Star Formation Tracers
- How do different spiral arm models impact the ISM and GMC population?
- The evolution of pitch angles of spiral arms
- Effects of Spiral Arms on Star Formation in Nuclear Rings of Barred-spiral Galaxies
- Statistics on 24 spiral galaxies having different observed arm locations using different arm tracers
- Spiral arms and disc stability in the Andromeda galaxy
- Galaxies decomposition with spiral arms -- II: A multiwavelength case study of M 51
- The shock-induced star formation sequence resulting from a constant spiral pattern speed
- Molecular clouds in M51 from high-resolution extinction mapping
- CO Multi-line Imaging of Nearby Galaxies (COMING). VII. Fourier decomposition of molecular gas velocity fields and bar pattern speed
- Resonance coupling in spiral arms: Patterns for flat rotation curve
- Morphology and kinematics of the gas in M51: How interaction with NGC5195 has moulded the structure of its arms
- A Comprehensive Analysis on the Nature of the Spiral Arms in NGC 3686, NGC 4321, and NGC 2403
- Jammed Keplerian gas leads to the formation and disappearance of spiral arms in a coupled map lattice for astronomical objects
- The young stellar clusters in M51 and the impact of GMC encounters
- A Dynamic Galaxy: Stellar Age Patterns Across the Disk of M101