The SAMI Galaxy Survey: flipping of the spin-filament alignment correlates most strongly with growth of the bulge
arXiv:2208.10767 · doi:10.1093/mnras/stac2405
Abstract
We study the alignments of galaxy spin axes with respect to cosmic web filaments as a function of various properties of the galaxies and their constituent bulges and discs. We exploit the SAMI Galaxy Survey to identify 3D spin axes from spatially-resolved stellar kinematics and to decompose the galaxy into the kinematic bulge and disc components. The GAMA survey is used to reconstruct the cosmic filaments. The mass of the bulge, defined as the product of stellar mass and bulge-to-total flux ratio M_bulge=M_star x (B/T), is the primary parameter of correlation with spin-filament alignments: galaxies with lower bulge masses tend to have their spins parallel to the closest filament, while galaxies with higher bulge masses are more perpendicularly aligned. M_star and B/T separately show correlations, but they do not fully unravel spin-filament alignments. Other galaxy properties, such as visual morphology, stellar age, star formation activity, kinematic parameters and local environment, are secondary tracers. Focusing on S0 galaxies, we find preferentially perpendicular alignments, with the signal dominated by high-mass S0 galaxies. Studying bulge and disc spin-filament alignments separately reveals additional information about the formation pathways of the corresponding galaxies: bulges tend to have more perpendicular alignments, while discs show different tendencies according to their kinematic features and the mass of the associated bulge. The observed correlation between the flipping of spin-filament alignments and the growth of the bulge can be explained by mergers, which drive both alignment flips and bulge formation.
Accepted for publication in MNRAS. 23 pages, 22 figures, 2 3D models at https://skfb.ly/o9MXv and https://skfb.ly/o9MXz, 5 supplementary figures
References in corpus (44)
- Array Programming with NumPy
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- The SAURON project -- IX. A kinematic classification for early-type galaxies
- The SAURON project -- X. The orbital anisotropy of elliptical and lenticular galaxies: revisiting the (V/sigma,epsilon) diagram with integral-field stellar kinematics
- The SAMI Galaxy Survey: instrument specification and target selection
- Spin alignment of dark matter haloes in filaments and walls
- Bulge mass is king: The dominant role of the bulge in determining the fraction of passive galaxies in the Sloan Digital Sky Survey
- Galaxy And Mass Assembly (GAMA): the G02 field, Herschel-ATLAS target selection and Data Release 3
- The SAMI Galaxy Survey: the link between angular momentum and optical morphology
- The SAMI Galaxy Survey: Revisiting Galaxy Classification Through High-Order Stellar Kinematics
- The SAMI Galaxy Survey: Early Data Release
- ProFit: Bayesian Profile Fitting of Galaxy Images
- The SAMI Galaxy Survey: the third and final data release
- Dissecting Galaxy Formation: I. Comparison Between Pure Dark Matter and Baryonic Models
- The Alignments of the Galaxy Spins with the Real-Space Tidal Field Reconstructed from the Two Mass Redshift Survey
- The SAMI Galaxy Survey: Cubism and covariance, putting round pegs into square holes
- The Cosmic Ballet II: Spin alignment of galaxies and haloes with large-scale filaments in the EAGLE simulation
- LZIFU: an emission-line fitting toolkit for integral field spectroscopy data
- Spin alignments of spiral galaxies within the large-scale structure from SDSS DR7
- The SAMI Galaxy Survey: Global stellar populations on the size-mass plane
- The alignment of satellite galaxies and cosmic filaments: observations and simulations
- The SAMI Galaxy Survey: First detection of a transition in spin orientation with respect to cosmic filaments in the stellar kinematics of galaxies
- Mergers drive spin swings along the cosmic web
- The SAMI Galaxy Survey: Quenching of star formation in clusters I. Transition galaxies
- The SAMI Galaxy Survey: Data Release One with Emission-line Physics Value-Added Products
- The quenching of galaxies, bulges, and disks since cosmic noon: A machine learning approach for identifying causality in astronomical data
- The Origin of S0s in Clusters: evidence from the bulge and disc star formation histories
- The ALMaQUEST Survey IX: The nature of the resolved star forming main sequence
- Alignment of galaxies relative to their local environment in SDSS-DR8
- Alignment between filaments and galaxy spins from the MaNGA integral-field survey
- The Imprint of Cosmic Web Quenching on Central Galaxies
- The SAMI Galaxy Survey: Decomposed Stellar Kinematics of Galaxy Bulges and Disks
- Cosmic filaments in galaxy cluster outskirts: quantifying finding filaments in redshift space
- The SAMI Galaxy Survey: Mass and Environment as Independent Drivers of Galaxy Dynamics
- Star-formation in CALIFA early-type galaxies. A matter of discs
- Formation of S0s in extreme environments I: clues from kinematics and stellar populations
- What drives galaxy quenching? A deep connection between galaxy kinematics and quenching in the local Universe
- Galaxy And Mass Assembly (GAMA): Bulge-disk decomposition of KiDS data in the nearby universe
- MIGHTEE-HI: The relation between the HI gas in galaxies and the cosmic web
- The SAMI Galaxy Survey: bulge and disk stellar population properties in cluster galaxies
- Indications of the invalidity of the exponentiality of the disk within bulges of spiral galaxies
- The colors of bulges and disks in the core and outskirts of galaxy clusters
- The SAMI Galaxy Survey: The role of disc fading and progenitor bias in kinematic transitions
Cited by in corpus (18)
- The SAMI Galaxy Survey: Using Tidal Streams and Shells to Trace the Dynamical Evolution of Massive Galaxies
- Gas metallicity distributions in SDSS-IV MaNGA galaxies: what drives gradients and local trends?
- The SAMI Galaxy Survey: galaxy spin is more strongly correlated with stellar population age than mass or environment
- An Observed Transition of Galaxy Spins on the Void Surfaces
- Galaxy And Mass Assembly (GAMA): Stellar-to-Dynamical Mass Relation I. Constraining the Precision of Stellar Mass Estimates
- Large-scale asymmetry in the distribution of galaxy spin directions -- analysis and reproduction
- Orientation of the spins of galaxies in the Local volume
- Central galaxy alignments. Dependence on the mass and the large-scale environment
- The outskirts of M33: Tidally induced distortions versus signatures of gas accretion
- Living with Neighbors. V. Better-aligned Spiral+Spiral Galaxy Pairs Show Stronger Star Formation
- The GECKOS survey: Jeans anisotropic models of edge-on discs uncover the impact of dust and kinematic structures
- Galaxy Spin Alignment with Tidal Fields in the SDSS-IV MaNGA Survey
- A 15 Mpc rotating galaxy filament at redshift z = 0.032
- The MAGPI Survey: the subtle role of environment and not-so-subtle impact of generations of stars on galaxy dynamics
- Alignment of spiral and elliptical galaxies from Siena Galaxy Atlas with filaments
- Environmental Sculpting of Galaxy Structure at Fixed Stellar Mass: A Multi-Scale Analysis Across Cosmic Time using 3 Million HSC Galaxies
- Edge-on galaxies relative to edge-on view of the Local Supercluster
- Euclid preparation. 3D reconstruction of the cosmic web with simulated Euclid Deep spectroscopic samples