Fossil evidence for spin alignment of SDSS galaxies in filaments
Bernard J.T. Jones (1), Rien van de Weygaert (1), Miguel A., Aragon-Calvo (2) ((1) Kapteyn Astronomical Institute, University of, Groningen, Groningen, the Netherlands, (2) Dept. Physics & Astronomy, the, Johns Hopkins University, Baltimore, U.S.A.)

TL;DR
This study provides fossil evidence that galaxy spin axes in cosmic web filaments are non-randomly aligned, supporting the influence of large-scale tidal torques on galaxy orientations.
Contribution
It introduces a novel method for detecting galaxy spin alignments in filaments using fossil evidence, focusing on edge-on galaxies in SDSS data.
Findings
Significant deviation from random orientation distribution.
Identification of 14 galaxies with perpendicular spin axes to filaments.
Alignment more common in less dense filaments.
Abstract
We search for and find fossil evidence that the distribution of the spin axes of galaxies in cosmic web filaments relative to their host filaments are not randomly distributed. This would indicate that the action of large scale tidal torques effected the alignments of galaxies located in cosmic filaments. To this end, we constructed a catalogue of clean filaments containing edge-on galaxies. We started by applying the Multiscale Morphology Filter (MMF) technique to the galaxies in a redshift-distortion corrected version of the Sloan Digital Sky Survey DR5. From that sample we extracted those 426 filaments that contained edge-on galaxies (b/a < 0.2). These filaments were then visually classified relative to a variety of quality criteria. Statistical analysis using "feature measures" indicates that the distribution of orientations of these edge-on galaxies relative to their parent…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Time Series Analysis and Forecasting
