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Galaxy Zoo: Unwinding the Winding Problem - Observations of Spiral Bulge Prominence and Arm Pitch Angles Suggest Local Spiral Galaxies are Winding

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arxiv 1904.11436 v1 pith:7GSJMWZI submitted 2019-04-25 astro-ph.GA

classification astro-ph.GA
keywords spiralwindingarmsbulgegalaxiessizedensityobservations
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We use classifications provided by citizen scientists though Galaxy Zoo to investigate the correlation between bulge size and arm winding in spiral galaxies. Whilst the traditional spiral sequence is based on a combination of both measures, and is supposed to favour arm winding where disagreement exists, we demonstrate that, in modern usage, the spiral classifications Sa-Sd are predominantly based on bulge size, with no reference to spiral arms. Furthermore, in a volume limited sample of galaxies with both automated and visual measures of bulge prominence and spiral arm tightness, there is at best a weak correlation between the two. Galaxies with small bulges have a wide range of arm winding, while those with larger bulges favour tighter arms. This observation, interpreted as revealing a variable winding speed as a function of bulge size, may be providing evidence that the majority of spiral arms are not static density waves, but rather wind-up over time. This suggests the "winding problem" could be solved by the constant reforming of spiral arms, rather than needing a static density wave. We further observe that galaxies exhibiting strong bars tend have more loosely wound arms at a given bulge size than unbarred spirals. This observations suggests that the presence of a bar may slow the winding speed of spirals, and may also drive other processes (such as density waves) which generate spiral arms. It is remarkable that after over 170 years of observations of spiral arms in galaxies our understanding of them remains incomplete.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The shapes of spiral arms in the S$^4$G survey and their connection with stellar bars

    astro-ph.GA 2019-08 conditional novelty 6.0 of 10

    The pitch angle of spiral arms in 391 S4G galaxies is essentially independent of bar strength and of black hole mass, while spiral arm amplitude does correlate with bar strength and bar length.

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

    astro-ph.GA 2026-06 unverdicted novelty 5.0 of 10

    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.

  3. Morphologies of SAGAbg low-mass galaxies in Legacy Survey multi-band imaging: dependence on stellar masses, star-formation rates and low-redshift evolution

    astro-ph.GA 2026-07 conditional novelty 4.0 of 10

    Low-mass star-forming galaxies are disk-dominated; their light concentration increases with stellar mass and decreases with sSFR, with bulges emerging near log(M*/M_sun) ~ 9.

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