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Kinematic Signature of a Rotating Bar Near a Resonance

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arxiv astro-ph/9304026 v1 pith:3DRF3JBY submitted 1993-04-28 astro-ph

Kinematic Signature of a Rotating Bar Near a Resonance

classification astro-ph
keywords modelskinematicrotatingvelocitydatadispersionpatternsignatures
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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There have been several recent suggestions that the Milky Way has rotating bar-like features based on HI and star count data. In this paper, I show that such features cause distinctive stellar kinematic signatures near OLR and ILR. The effects of these resonances may be observable far from the peak density of the pattern and relatively nearby the solar position. The details of the kinematic signatures depend on the evolutionary history of the `bar' and therefore velocity data, both systemic and velocity dispersion, may be used to probe the evolutionary history as well as the present state of the Galaxy. Kinematic models for a variety of simple scenarios are presented. Models with evolving pattern speeds show significantly stronger dispersion signatures than those with static pattern speeds, suggesting that useful observational constraints are possible. The models are applied to the proposed rotating spheroid and bar models; we find: 1) none of these models chosen to represent the proposed large-scale rotating spheroid are consistent with the stellar kinematics; and 2) a Galactic bar with semimajor axis of $3\kpc$ will cause a large increase in velocity dispersion in the vicinity of OLR ($\sim5\kpc$) with little change in the net radial motion and such a signature is suggested by K-giant velocity data. Potential future observations and analyses are discussed.

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Cited by 1 Pith paper

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  1. Wrinkles in Time. II. Stellar Age Trends in Kinematic Signatures from Transient Spiral Structure

    astro-ph.GA 2026-06 unverdicted novelty 5.0

    Simulations show Lindblad-resonance wrinkles from non-winding spirals are filled with zero-age stars on orbits normally occupied by much older populations, offering an age-based constraint on past transient spiral patterns.