Toward an Optimal Sampling of Peculiar Velocity Surveys For Wiener Filter Reconstructions
arXiv:1703.02045 · doi:10.1093/mnras/stx557
Abstract
The Wiener Filter (WF) technique enables the reconstruction of density and velocity fields from observed radial peculiar velocities. This paper aims at identifying the optimal design of peculiar velocity surveys within the WF framework. The prime goal is to test the dependence of the quality of the reconstruction on the distribution and nature of data points. Mock datasets, extending to 250 Mpc/h, are drawn from a constrained simulation that mimics the local Universe to produce realistic mock catalogs. Reconstructed fields obtained with these mocks are compared to the reference simulation. Comparisons, including residual distributions, cell-to-cell and bulk velocities, imply that the presence of field data points is essential to properly measure the flows. The fields reconstructed from mocks that consist only of galaxy cluster data points exhibit poor quality bulk velocities. In addition, the quality of the reconstruction depends strongly on the grouping of individual data points into single points to suppress virial motions in high density regions. Conversely, the presence of a Zone of Avoidance hardly affects the reconstruction. For a given number of data points, a uniform sample does not score any better than a sample with decreasing number of data points with the distance. The best reconstructions are obtained with a grouped survey containing field galaxies: Assuming no error, they differ from the simulated field by less than 100 km/s up to the extreme edge of the catalogs or up to a distance of three times the mean distance of data points for non-uniform catalogs. The overall conclusions hold when errors are added.
Accepted for publication in MNRAS, 12 pages, 7 figures, 1 table
References in corpus (11)
- Improved Distances to Type Ia Supernovae with Multicolor Light Curve Shapes: MLCS2k2
- The Laniakea supercluster of galaxies
- From Spitzer Galaxy Photometry to Tully-Fisher Distances
- Cosmic Bulk Flow and the Local Motion from Cosmicflows-2
- Minimization of Biases in Galaxy Peculiar Velocity Catalogs
- The Calibration of the WISE W1 and W2 Tully-Fisher Relation
- Large-scale Cosmic Flows from Cosmicflows-2 Catalog
- A Massive Spiral Galaxy in the Zone of Avoidance
- Deep NIR photometry of HI galaxies in the Zone of Avoidance
- NIR Tully-Fisher in the Zone of Avoidance. -- III. Deep NIR catalogue of the HIZOA galaxies
- Lagrangian reconstruction of cosmic velocity fields
Cited by in corpus (14)
- Physical Bayesian modelling of the non-linear matter distribution: new insights into the Nearby Universe
- The Hestia project: simulations of the Local Group
- Simulating the LOcal Web (SLOW): I. Anomalies in the local density field
- Galaxy clusters in local Universe simulations without density constraints: a long uphill struggle
- Galaxy clusters in simulations of the local Universe: a matter of constraints
- I- A hydrodynamical CLONE of the Virgo cluster of galaxies to confirm observationally-driven formation scenarios
- Simulating the LOcal Web (SLOW) II: Properties of local galaxy clusters
- Virgo: an unlikely cluster of galaxies because of its environment
- Merger types forming the Virgo cluster in recent gigayears
- Simulating the LOcal Web (SLOW) -- III: Synchrotron emission from the local cosmic web
- Constrained simulations of the local Universe with Modified Gravity
- Peculiar Velocity Reconstruction From Simulations and Observations Using Deep Learning Algorithms
- Efficiently estimating mean, uncertainty and unconstrained large scale fraction of local Universe simulations with paired fixed fields
- Cosmic Dawn II (CoDa II): a new radiation-hydrodynamics simulation of the self-consistent coupling of galaxy formation and reionization