Photometric asymmetry between clockwise and counterclockwise spiral galaxies in SDSS
arXiv:1611.06465 · doi:10.1017/pasa.2017.4
Abstract
While galaxies with clockwise and counterclockwise handedness are visually different, they are expected to be symmetric in all of their other characteristics. Previous experiments using both manual analysis and machine vision have shown that the handedness of Sloan Digital Sky Survey (SDSS) galaxies can be predicted with accuracy significantly higher than mere chance using its photometric data alone, showing that SDSS photometry pipeline is sensitive to the handedness of the galaxy. However, some of these previous experiments were based on manually classified galaxies, and the results may therefore be subjected to bias originated from the human perception. This paper describes an experiment based on a set of 162,514 celestial objects classified as clockwise and counterclockwise spiral galaxies in a fully automatic process, showing that the source of the asymmetry is more than the human perception bias. The results are compared to two smaller datasets, and confirm the observation that the handedness of SDSS galaxies can be predicted by their photometric information, and show that the position angle of counterclockwise galaxies computed by SDSS photometry pipeline is consistently higher than the position angle computed for galaxies with clockwise patterns. The experiment also shows statistically significant differences in the measured magnitude, according which galaxies with clockwise patterns are brighter than galaxies with counterclockwise patterns. The magnitude of that difference changes across RA ranges, and exhibits a strong correlation with the cosine of the right ascension.
PASA, accepted
References in corpus (5)
- Astrophysics Source Code Library
- Galaxy Zoo 1 : Data Release of Morphological Classifications for nearly 900,000 galaxies
- Galaxy Zoo: The large-scale spin statistics of spiral galaxies in the Sloan Digital Sky Survey
- Detection of a Dipole in the Handedness of Spiral Galaxies with Redshifts z ~ 0.04
- Combining human and machine learning for morphological analysis of galaxy images
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- Spin Parity of Spiral Galaxies I -- Corroborative Evidence for Trailing Spirals
- Spin Parity of Spiral Galaxies III -- Dipole Analysis of the Distribution of SDSS Spirals with 3D Random Walk Simulations
- Analysis of spin directions of galaxies in the DESI Legacy Survey
- New evidence and analysis of cosmological-scale asymmetry in galaxy spin directions
- Large-scale asymmetry between clockwise and counterclockwise galaxies revisited
- Using 3D and 2D analysis for analyzing large-scale asymmetry in galaxy spin directions
- Analysis of spiral galaxies from four telescopes shows large-scale patterns of asymmetry in galaxy spin directions
- Large-scale asymmetry in the distribution of galaxy spin directions -- analysis and reproduction
- Large-scale asymmetry in galaxy spin directions -- analysis of galaxies with spectra in DES, SDSS, and DESI Legacy Survey
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