The frame-dragging vector potential on galaxy scales from Dark-Matter-only Newtonian -body simulations
arXiv:2512.08703 · doi:10.1093/mnras/stag489
Abstract
Effects of General Relativity are usually neglected in the non-linear evolution of structures, where Newtonian -body simulations are traditionally employed. In the post-Friedmann expansion framework, a weak-field relativistic approximation purpose-built for cosmology, a frame-dragging gravito-magnetic vector potential arises at leading order, sourced by momentum currents. At this order, the vector potential contributes to the metric while leaving the dynamics of the matter fields unaffected, as it does not appear in the Euler equation. It can therefore be extracted a posteriori from standard N-body simulations, where the dynamics is purely Newtonian. Using the Delaunay Tessellation Field Estimator code on the IllustrisTNG simulations, here we extend previous work in order to compute the power spectrum of this vector potential down to galactic scales. The magnitude of the vector potential is two orders of magnitude larger than predicted by perturbation theory, and is a effect compared to the non-linear Newtonian scalar gravitational potential. In the redshift range considered here, the gravito-magnetic effect remains subdominant, without showing any enhancement during a particular phase in the evolution of structures, aside from the continuous growth of non-linearity at low redshift. Although this seems to suggest that, within the CDM model, no significant gravito-magnetic effects contribute to the non-linear evolution of cosmic structures, i.e. to the dynamics of massive particles, possible observational consequences, e.g. in lensing, deserve further exploration.
Accepted for publication in MNRAS. 21 pages, 21 figures. Please note that the title has been slightly changed, so we recommend checking it while citing
References in corpus (57)
- Array Programming with NumPy
- Planck 2015 results. XIII. Cosmological parameters
- The Gaia mission
- LSST: from Science Drivers to Reference Design and Anticipated Data Products
- E pur si muove: Galiliean-invariant cosmological hydrodynamical simulations on a moving mesh
- Weak Gravitational Lensing
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Stable clustering, the halo model and nonlinear cosmological power spectra
- Simulating Galaxy Formation with the IllustrisTNG Model
- First results from the IllustrisTNG simulations: matter and galaxy clustering
- The Simons Observatory: Science goals and forecasts
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Planck 2018 results. V. CMB power spectra and likelihoods
- The Inner Structure of LambdaCDM Halos I: A Numerical Convergence Study
- First Results from the TNG50 Simulation: Galactic outflows driven by supernovae and black hole feedback
- Gravity Probe B: Final Results of a Space Experiment to Test General Relativity
- First Results from the TNG50 Simulation: The evolution of stellar and gaseous disks across cosmic time
- Cosmic Growth History and Expansion History
- Cosmological perturbations
- Gaia Data Release 2: Kinematics of globular clusters and dwarf galaxies around the Milky Way
- The Einstein Toolkit: A Community Computational Infrastructure for Relativistic Astrophysics
- Supermassive black holes and their feedback effects in the IllustrisTNG simulation
- The effects of galaxy formation on the matter power spectrum: A challenge for precision cosmology
- The optical morphologies of galaxies in the IllustrisTNG simulation: a comparison to Pan-STARRS observations
- HMcode-2020: Improved modelling of non-linear cosmological power spectra with baryonic feedback
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- nbodykit: an open-source, massively parallel toolkit for large-scale structure
- The evolution of the mass-metallicity relation in IllustrisTNG
- Generation of Vorticity and Velocity Dispersion by Orbit Crossing
- Tracing the Dark Matter Sheet in Phase Space
- General relativity and cosmic structure formation
- The fraction of dark matter within galaxies from the IllustrisTNG simulations
- Gaia Data Release 3: Mapping the asymmetric disc of the Milky Way
- Disentangling non-Gaussianity, bias and GR effects in the galaxy distribution
- The Properties of Cosmic Velocity Fields
- Effects of nonlinear inhomogeneity on the cosmic expansion with numerical relativity
- Computing General Relativistic effects from Newtonian N-body simulations: Frame dragging in the post-Friedmann approach
- N-body methods for relativistic cosmology
- The cosmological background of vector modes
- Non-Gaussian initial conditions in CDM: Newtonian, relativistic and primordial contributions
- The missing link: a nonlinear post-Friedmann framework for small and large scales
- Testing dark matter and geometry sustained circular velocities in the Milky Way with Gaia DR2
- The EAGLE simulations of galaxy formation: Public release of particle data
- Cosmological nonlinear hydrodynamics with post-Newtonian corrections
- The Generation of Vorticity in Cosmological N-body Simulations
- GRAMSES: a new route to general relativistic -body simulations in cosmology. Part I. Methodology and code description
- The fully non-linear post-Friedmann frame-dragging vector potential: Magnitude and time evolution from N-body simulations
- Weak lensing induced by second-order vector mode
- The Impact of baryonic physics on the kinetic Sunyaev-Zel'dovich Effect
- f(R) gravity on non-linear scales: The post-Friedmann expansion and the vector potential
- Effects of the size of cosmological N-Body simulations on physical quantities - III: Skewness
- Vector modes in CDM: the gravitomagnetic potential in dark matter haloes from relativistic -body simulations
- Looking for a twist: probing the cosmological gravitomagnetic effect via weak lensing-kSZ cross correlations
- Relativistic weak lensing from a fully non-linear cosmological density field
- Gravitational corrections to light propagation in a perturbed FLRW-universe and corresponding weak lensing spectra
- Structure formation and quasi-spherical collapse from initial curvature perturbations with numerical relativity simulations
- Exploring Milky Way rotation curves with Gaia DR3: a comparison between CDM, MOND, and General Relativistic approaches