Alignment of spiral and elliptical galaxies from Siena Galaxy Atlas with filaments
arXiv:2509.02062 · doi:10.1051/0004-6361/202554113
Abstract
The properties of galaxies are known to have been influenced by the large-scale structures that they inhabit. Theory suggests that galaxies acquire angular momentum during the linear stage of structure formation, and hence predict alignments between the spin of halos and the nearby structures of the cosmic web. In this study, we use the largest catalog of galaxies publicly available - the Siena Galaxy Atlas - to study the alignment of the spin normals of elliptical and spiral galaxies with filaments constructed by applying the Bisous process on galaxies ( 0.2) from SDSS - DR12. Our sample comprises 32517 disk and 18955 elliptical galaxies that are within 2 Mpc of any filament spine. We find that the spin normals of elliptical galaxies exhibit a strong perpendicular alignment with respect to the orientation of the host filaments, inconsistent with random distributions by up to 13 . The spin axis of spiral galaxies shows a much weaker but nonzero alignment signal with their host filaments of 2.8 when compared with random. These numbers depend on exactly how the significance is measured, as elucidated in the text. Furthermore, the significance of the alignment signal is examined as a function of distance from the filament spine. Spiral galaxies reach a maximum signal between 0.5 and 1 Mpc. elliptical galaxies reach their maximum significance between 0.2 and 0.5 Mpc. We also note that with a tailored selection of galaxies, as a function of both i) distance from the filaments \& as a ii) function of absolute luminosity, the alignment significance can be maximized.
11 Pages, 8 Figures & 3 Tables. Accepted by Astronomy & Astrophysics (August 21st, 2025)
References in corpus (22)
- HyperLEDA. III. The catalogue of extragalactic distances
- Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Data Calibration
- The Evolution of Dark Matter Halo Properties in Clusters, Filaments, Sheets and Voids
- Spin alignment of dark matter haloes in filaments and walls
- The spin and orientation of dark matter halos within cosmic filaments
- From voids to filaments: environmental transformations of galaxies in the SDSS
- The Alignments of the Galaxy Spins with the Real-Space Tidal Field Reconstructed from the Two Mass Redshift Survey
- The Cosmic Ballet II: Spin alignment of galaxies and haloes with large-scale filaments in the EAGLE simulation
- Cosmic web alignments with the shape, angular momentum and peculiar velocities of dark matter haloes
- Spin alignments of spiral galaxies within the large-scale structure from SDSS DR7
- The alignment of satellite galaxies and cosmic filaments: observations and simulations
- The universal nature of subhalo accretion
- The SAMI Galaxy Survey: First detection of a transition in spin orientation with respect to cosmic filaments in the stellar kinematics of galaxies
- The orientation of galaxy dark matter haloes around cosmic voids
- The build up of the correlation between halo spin and the large scale structure
- Alignment of galaxies relative to their local environment in SDSS-DR8
- SDSS-IV MaNGA: 3D spin alignment of spiral and S0 galaxies
- Alignment between filaments and galaxy spins from the MaNGA integral-field survey
- CHILES VI: HI and H Observations for z < 0.1 Galaxies; Probing HI Spin Alignment with Filaments in the Cosmic Web
- The SAMI Galaxy Survey: flipping of the spin-filament alignment correlates most strongly with growth of the bulge
- Morphology & Environment's Role on the Star Formation Rate -- Stellar Mass Relation in COSMOS from 0 < z < 3.5
- Orientation of galaxy spins relative to filaments of the large-scale structure of the Universe