Alignment of galaxies relative to their local environment in SDSS-DR8
A. Hirv, J. Pelt, E. Saar, E. Tago, A. Tamm, E. Tempel, M. Einasto

TL;DR
This study investigates how different galaxy types align with their local environment in SDSS-DR8, revealing patterns related to galaxy morphology, environment density, and evolutionary processes.
Contribution
It introduces a novel vector field method to quantify galaxy environment anisotropy and analyzes galaxy alignments across various types and densities, providing insights into galaxy evolution.
Findings
Sab galaxies show perpendicular alignment in sparse environments.
Scd galaxies tend to align parallel in dense regions.
Elliptical galaxy alignment increases with environment density and luminosity.
Abstract
We study the alignment of galaxies relative to their local environment in SDSS-DR8 and, using these data, we discuss evolution scenarios for different types of galaxies. We defined a vector field of the direction of anisotropy of the local environment of galaxies. We summed the unit direction vectors of all close neighbours of a given galaxy in a particular way to estimate this field. We found the alignment angles between the spin axes of disc galaxies, or the minor axes of elliptical galaxies, and the direction of anisotropy. The distributions of cosines of these angles are compared to the random distributions to analyse the alignment of galaxies. Sab galaxies show perpendicular alignment relative to the direction of anisotropy in a sparse environment, for single galaxies and galaxies of low luminosity. Most of the parallel alignment of Scd galaxies comes from dense regions, from 2...3…
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