Effects of Self-Calibration of Intrinsic Alignment on Cosmological Parameter Constraints from Future Cosmic Shear Surveys
arXiv:1707.01072 · doi:10.1088/1475-7516/2017/10/056
Abstract
Intrinsic alignments (IA) of galaxies have been recognized as one of the most serious contaminants to weak lensing. These systematics need to be isolated and mitigated in order for ongoing and future lensing surveys to reach their full potential. The IA self-calibration (SC) method was shown in previous studies to be able to reduce the GI contamination by up to a factor of 10 for the 2-point and 3-point correlations. The SC method does not require to assume an IA model in its working and can extract the GI signal from the same photo-z survey offering the possibility to test and understand structure formation scenarios and their relationship to IA models. In this paper, we study the effects of the IA SC mitigation method on the precision and accuracy of cosmological parameter constraints from future cosmic shear surveys LSST, WFIRST and Euclid. We perform analytical and numerical calculations to estimate the loss of precision and the residual bias in the best fit cosmological parameters after the self-calibration is performed. We take into account uncertainties from photometric redshifts and the galaxy bias. We find that the confidence contours are slightly inflated from applying the SC method itself while a significant increase is due to the inclusion of the photo-z uncertainties. The bias of cosmological parameters is reduced from several-, when IA is not corrected for, to below 1- after SC is applied. These numbers are comparable to those resulting from applying the method of marginalizing over IA model parameters despite the fact that the two methods operate very differently. We conclude that implementing the SC for these future cosmic-shear surveys will not only allow one to efficiently mitigate the GI contaminant but also help to understand their modeling and link to structure formation.
20 pages, 9 figures; matches version published in JCAP
References in corpus (10)
- Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements
- Cosmology with Weak Lensing Surveys
- Intrinsic galaxy alignments from the 2SLAQ and SDSS surveys: luminosity and redshift scalings and implications for weak lensing surveys
- The Intrinsic Alignment of Galaxies and its Impact on Weak Gravitational Lensing in an Era of Precision Cosmology
- Lensing is Low: Cosmology, Galaxy Formation, or New Physics?
- The removal of shear-ellipticity correlations from the cosmic shear signal via nulling techniques
- Alignment between galaxies and large-scale structure
- Separating intrinsic alignment and galaxy-galaxy lensing
- Testing gravity on large scales by combining weak lensing with galaxy clustering using CFHTLenS and BOSS CMASS
- Constraints and tensions in testing general relativity from Planck and CFHTLenS including intrinsic alignment systematics
Cited by in corpus (9)
- Strong lensing as a giant telescope to localize the host galaxy of gravitational wave event
- First measurement of the characteristic depletion radius of dark matter haloes from weak lensing
- Cosmological discordances III: more on measure properties, Large-Scale-Structure constraints, the Hubble constant and Planck
- KiDS-1000: cross-correlation with Planck cosmic microwave background lensing and intrinsic alignment removal with self-calibration
- AI-assisted super-resolution cosmological simulations III: Time evolution
- Forecast of cross-correlation of CSST cosmic shear tomography with AliCPT-1 CMB lensing
- A rising tide: Intrinsic alignments since the turn of the millennium
- Intrinsic alignment from multiple shear estimates: A first application to data and forecasts for Stage IV
- A direct detection method of galaxy intrinsic ellipticity-gravitational shear correlation in non-linear regimes using self-calibration