Galaxy density profiles and shapes -- II. selection biases in strong lensing surveys
arXiv:0808.2497 · doi:10.1111/j.1365-2966.2009.15166.x
Abstract
[Abridged] Many current and future astronomical surveys will rely on samples of strong gravitational lens systems to draw conclusions about galaxy mass distributions. We use a new strong lensing pipeline (presented in Paper I of this series) to explore selection biases that may cause the population of strong lensing systems to differ from the general galaxy population. Our focus is on point-source lensing by early-type galaxies with two mass components (stellar and dark matter) that have a variety of density profiles and shapes motivated by observational and theoretical studies of galaxy properties. We seek not only to quantify but also to understand the physics behind selection biases related to: galaxy mass, orientation and shape; dark matter profile parameters such as inner slope and concentration; and adiabatic contraction. We study how all of these properties affect the lensing Einstein radius, total cross-section, quad/double ratio, and image separation distribution. We find significant (factors of several) selection biases with mass; orientation, for a given galaxy shape at fixed mass; cusped dark matter profile inner slope and concentration; concentration of the stellar and dark matter deprojected Sersic models. Interestingly, the intrinsic shape of a galaxy does not strongly influence its lensing cross-section when we average over viewing angles. Our results are an important first step towards understanding how strong lens systems relate to the general galaxy population.
26 pages, 15 figures; paper I at arXiv:0808.2493; accepted for publication in MNRAS (minor revisions); PDF file with full resolution figures at http://www.sns.ias.edu/~rmandelb/paper2.pdf
References in corpus (18)
- The ACS Virgo Cluster Survey. VI. Isophotal Analysis and the Structure of Early-Type Galaxies
- The Sloan Lens ACS Survey. III - The Structure and Formation of Early-type Galaxies and their Evolution since z~1
- The Sloan Lens ACS Survey. V. The Full ACS Strong-Lens Sample
- Neutral hydrogen in nearby elliptical and lenticular galaxies: the continuing formation of early-type galaxies
- Analytic models of plausible gravitational lens potentials
- The Observed Concentration-Mass Relation for Galaxy Clusters
- Strong lensing optical depths in a \LambdaCDM universe
- Strong lensing optical depths in a LCDM universe II: the influence of the stellar mass in galaxies
- The Sloan Digital Sky Survey Quasar Lens Search. II. Statistical Lens Sample from the Third Data Release
- The impact of gas physics on strong cluster lensing
- The Sloan Digital Sky Survey Quasar Lens Search. IV. Statistical Lens Sample from the Fifth Data Release
- The Impact of Baryonic Cooling on Giant Arc Abundances
- The effect of baryon cooling on the statistics of giant arcs and multiple quasars
- Strong lensing statistics in large, z~<0.2 surveys: bias in the lens galaxy population
- Lensing Probabilities for Spectroscopically Selected Galaxy-Galaxy Strong Lenses
- Effects of the halo concentration distribution on strong-lensing optical depth and X-ray emission
- Is There a Quad Problem among Optical Gravitational Lenses?
- Biases in the Gravitational Lens Population Induced by Halo and Galaxy Triaxiality
Cited by in corpus (36)
- Cosmological Simulations with Self-Interacting Dark Matter II: Halo Shapes vs. Observations
- Strong Lensing by Galaxies
- Gravitational Lensing
- Gravitationally lensed quasars and supernovae in future wide-field optical imaging surveys
- The dark matter of gravitational lensing
- The Sloan Lens ACS Survey. IX. Colors, Lensing and Stellar Masses of Early-type Galaxies
- The SL2S Galaxy-scale Lens Sample. V. Dark Matter Halos and Stellar IMF of Massive Early-type Galaxies out to Redshift 0.8
- Studying the emergence of the red sequence through galaxy clustering: host halo masses at z > 2
- Galaxy-Scale Strong Lensing Tests of Gravity and Geometric Cosmology: Constraints and Systematic Limitations
- Mimicking dark matter through a non-minimal gravitational coupling with matter
- Testing the dark energy with gravitational lensing statistics
- Reconstructing the Lensing Mass in the Universe from Photometric Catalogue Data
- The inner structure of early-type galaxies in the Illustris simulation
- Improved Constraints on the Gravitational Lens Q0957+561. II. Strong Lensing
- Substructure in the lens HE 0435-1223
- Comparison of an approximately isothermal gravitational potentials of elliptical galaxies based on X-ray and optical data
- Dark-Matter Decays and Self-Gravitating Halos
- H0LiCOW II. Spectroscopic survey and galaxy-group identification of the strong gravitational lens system HE0435-1223
- MOKA: a new tool for Strong Lensing Studies
- Observational selection biases in time-delay strong lensing and their impact on cosmography
- Mapping the allowed parameter space for decaying dark matter models
- Projected central dark matter fractions and densities in massive early-type galaxies from the Sloan Digital Sky Survey
- Hobby-Eberly Telescope Observations of the Dark Halo in NGC 821
- Strong Lensing by Galaxies
- Dark matter halos around isolated ellipticals
- Total mass density slopes of early-type galaxies using Jeans dynamical modelling at redshifts
- The Effects of Halo-to-Halo Variation on Substructure Lensing
- Strong lensing selection effects
- Galaxy-Galaxy Weak Lensing Measurements from SDSS: I. Image Processing and Lensing signals
- Out of sight, out of mind? The impact of correlated clustering in substructure lensing
- On the detectability of strong lensing in near-infrared surveys
- Do gravitational lens galaxies have an excess of luminous substructure?
- Predicted multiply-imaged X-ray AGNs in the XXL survey
- Multi-transonic spherical-type flows around massive black holes: galactic potential induced standing isothermal shocks
- Robustness of Neural Ratio and Posterior Estimators to Distributional Shifts for Population-Level Dark Matter Analysis in Strong Gravitational Lensing
- A Salpeter IMF and an NFW halo: Disentangling the dark and stellar mass of an elliptical galaxy through precise lens modelling of a double-source-plane system