Directional miscentering dependence in weak lensing mass bias
arXiv:2412.13883 · doi:10.1093/mnrasl/slaf007
Abstract
Galaxy cluster masses estimated from parametric modeling of weak lensing shear observations are known to be biased by inaccuracies in observationally determined centers. It has recently been shown that such systematic effects can be non-isotropic when centers are derived from X-ray or Compton-Y (Sunyaev-Zeldovich effect) observations, which is often the case in practice. This fact challenges current methods of accurately correcting for weak lensing mass biases using simulations paired with isotropic empirical miscentering distributions, in particular as the effect on determined masses is currently a dominant source of systematic uncertainty. We use hydrodynamical cosmological simulations taken from the Magneticum Pathfinder simulations to show that the non-isotropic component of the mass bias can be reduced to within one percent of the mass when considering the center of mass, rather than the bottom of the gravitational potential, as the reference center of a galaxy cluster.
6 pages, 4 figures, MNRAS accepted
References in corpus (48)
- Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- The cosmological simulation code GADGET-2
- Simulating the joint evolution of quasars, galaxies and their large-scale distribution
- Modeling feedback from stars and black holes in galaxy mergers
- Cosmological Parameters from Observations of Galaxy Clusters
- MultiDark simulations: the story of dark matter halo concentrations and density profiles
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Halo concentrations in the standard LCDM cosmology
- The history of star formation in a LCDM universe
- Cosmology with cosmic shear observations: a review
- Cosmological simulations of black hole growth: AGN luminosities and downsizing
- Chemical enrichment of galaxy clusters from hydrodynamical simulations
- Cluster Cosmology Constraints from the 2500 deg SPT-SZ Survey: Inclusion of Weak Gravitational Lensing Data from Magellan and the Hubble Space Telescope
- Turbulent gas motions in galaxy cluster simulations: The role of SPH viscosity
- A universal model for halo concentrations
- On the Accuracy of Weak Lensing Cluster Mass Reconstructions
- NIHAO IV: Core creation and destruction in dark matter density profiles across cosmic time
- Simulating the effect of AGN feedback on the metal enrichment of galaxy clusters
- Weighing the Giants - III. Methods and Measurements of Accurate Galaxy Cluster Weak-Lensing Masses
- An accurate physical model for halo concentrations
- Connecting Angular Momentum and Galactic Dynamics: The complex Interplay between Spin, Mass, and Morphology
- Cosmology and Astrophysics from Relaxed Galaxy Clusters II: Cosmological Constraints
- Dark Energy Survey Year 1 Results: Weak Lensing Mass Calibration of redMaPPer Galaxy Clusters
- SZ effects in the Magneticum Pathfinder Simulation: Comparison with the Planck, SPT, and ACT results
- An MHD Gadget for cosmological simulations
- Detailed cluster lensing profiles at large radii and the impact on cluster weak lensing studies
- Thermal Conduction in Simulated Galaxy Clusters
- The MUSIC of CLASH: predictions on the concentration-mass relation
- Galaxy-galaxy Lensing: Dissipationless Simulations Versus the Halo Model
- Cluster Mass Calibration at High Redshift: HST Weak Lensing Analysis of 13 Distant Galaxy Clusters from the South Pole Telescope Sunyaev-Zel'dovich Survey
- Halo Profiles and the Concentration-Mass Relation for a ΛCDM Universe
- The impact of baryons on massive galaxy clusters: halo structure and cluster mass estimates
- Cosmology and astrophysics from relaxed galaxy clusters - IV: Robustly calibrating hydrostatic masses with weak lensing
- The imprints of local superclusters on the Sunyaev-Zel'dovich signals and their detectability with Planck
- Sunyaev-Zel'dovich Effect and X-ray Scaling Relations from Weak-Lensing Mass Calibration of 32 SPT Selected Galaxy Clusters
- Mock weak lensing analysis of simulated galaxy clusters: bias and scatter in mass and concentration
- Cosmic Calibration
- Effects of large-scale structure on the accuracy of weak lensing mass measurements
- SZE Observables, Pressure Profiles and Center Offsets in Magneticum Simulation Galaxy Clusters
- Cosmological Constraints from Galaxy Clusters and Groups in the eROSITA Final Equatorial Depth Survey
- Calibration of bias and scatter involved in cluster mass measurements using optical weak gravitational lensing
- The SRG/eROSITA All-Sky Survey: Dark Energy Survey Year 3 Weak Gravitational Lensing by eRASS1 selected Galaxy Clusters
- Mass calibration of distant SPT galaxy clusters through expanded weak lensing follow-up observations with HST, VLT & Gemini-South
- Impact of Weak Lensing Mass Calibration on eROSITA Galaxy Cluster Cosmological Studies -- a Forecast
- Extending empirical constraints on the SZ-mass scaling relation to higher redshifts via HST weak lensing measurements of nine clusters from the SPT-SZ survey at
- The relative impact of baryons and cluster shape on weak lensing mass estimates of galaxy clusters
- SPT Clusters with DES and HST Weak Lensing. II. Cosmological Constraints from the Abundance of Massive Halos
- SPT Clusters with DES and HST Weak Lensing. I. Cluster Lensing and Bayesian Population Modeling of Multi-Wavelength Cluster Datasets