Minimization of Biases in Galaxy Peculiar Velocity Catalogs
arXiv:1504.06968 · doi:10.1093/mnras/stv760
Abstract
Galaxy distances and derived radial peculiar velocity catalogs constitute valuable datasets to study the dynamics of the Local Universe. However, such catalogs suffer from biases whose effects increase with the distance. Malmquist biases and lognormal error distribution affect the catalogs. Velocity fields of the Local Universe reconstructed with these catalogs present a spurious overall infall onto the Local Volume if they are not corrected for biases. Such an infall is observed in the reconstructed velocity field obtained when applying the BayesianWiener-Filter technique to the raw second radial peculiar velocity catalog of the Cosmicflows project. In this paper, an iterative method to reduce spurious non-Gaussianities in the radial peculiar velocity distribution, to retroactively derive overall better distance estimates resulting in a minimization of the effects of biases, is presented. This method is tested with mock catalogs. To control the cosmic variance, mocks are built out of different cosmological constrained simulations which resemble the Local Universe. To realistically reproduce the effects of biases, the mocks are constructed to be look-alikes of the second data release of the Cosmicflows project, with respect to the size, distribution of data and distribution of errors. Using a suite of mock catalogs, the outcome of the correction is verified to be affected neither by the added error realization, nor by the datapoint selection, nor by the constrained simulation. Results are similar for the different tested mocks. After correction, the general infall is satisfactorily suppressed. The method allows us to obtained catalogs which together with the Wiener-Filter technique give reconstructions approximating non biased velocity fields at 100-150 km/s (2-3 Mpc/h in terms of linear displacement), the linear theory threshold.
Accepted for publication in MNRAS, 13 pages, 10 figures, 1 table
References in corpus (3)
Cited by in corpus (26)
- The Hestia project: simulations of the Local Group
- Simulations of ultra-high Energy Cosmic Rays in the local Universe and the origin of Cosmic Magnetic Fields
- Constraining the mass of the Local Group
- Simulating the LOcal Web (SLOW): I. Anomalies in the local density field
- The stellar halo in Local Group Hestia simulations I. The in-situ component and the effect of mergers
- I- A hydrodynamical CLONE of the Virgo cluster of galaxies to confirm observationally-driven formation scenarios
- Identification of Basins of Attraction in the Local Universe
- Hamiltonian Monte Carlo reconstruction from peculiar velocities
- Cold and Hot gas distribution around the Milky-Way-M31 system in the HESTIA simulations
- From Cosmicflows distance moduli to unbiased distances and peculiar velocities
- The cosmic web around the Coma cluster from constrained cosmological simulations: I. Filaments connected to Coma at
- Simulating the LOcal Web (SLOW) II: Properties of local galaxy clusters
- Virgo: an unlikely cluster of galaxies because of its environment
- Predicting Structures in the Zone of Avoidance
- On the Mass Assembly History of the Local Group
- Field-Based Physical Inference From Peculiar Velocity Tracers
- Reionization time of the Local Group and Local-Group-like halo pairs
- The Past History of Galaxy Clusters told by their present neighbors
- Anisotropic satellite accretion onto the Local Group with HESTIA
- Simulating the LOcal Web (SLOW) -- III: Synchrotron emission from the local cosmic web
- Testing Bayesian reconstruction methods from peculiar velocities
- Efficiently estimating mean, uncertainty and unconstrained large scale fraction of local Universe simulations with paired fixed fields
- Constrained simulations of the local Universe with Modified Gravity
- Statistically bias-minimized peculiar velocity catalogs from Gibbs point processes and Bayesian inference
- NIHAO-LG: The uniqueness of Local Group dwarf galaxies
- An effective -Szekeres modelling of the local Universe with Cosmicflows-4