Optimal Surveys for Weak Lensing Tomography
arXiv:astro-ph/0610127 · doi:10.1111/j.1365-2966.2007.12271.x
Abstract
Weak lensing surveys provide a powerful probe of dark energy through the measurement of the mass distribution of the local Universe. A number of ground-based and space-based surveys are being planned for this purpose. Here, we study the optimal strategy for these future surveys using the joint constraints on the equation of state parameter wn and its evolution wa as a figure of merit by considering power spectrum tomography. For this purpose, we first consider an `ideal' survey which is both wide and deep and exempt from systematics. We find that such a survey has great potential for dark energy studies, reaching one sigma precisions of 1% and 10% on the two parameters respectively. We then study the relative impact of various limitations by degrading this ideal survey. In particular, we consider the effect of sky coverage, survey depth, shape measurements systematics, photometric redshifts systematics and uncertainties in the non-linear power spectrum predictions. We find that, for a given observing time, it is always advantageous to choose a wide rather than a deep survey geometry. We also find that the dark energy constraints from power spectrum tomography are robust to photometric redshift errors and catastrophic failures, if a spectroscopic calibration sample of 10^4-10^5 galaxies is available. The impact of these systematics is small compared to the limitations that come from potential uncertainties in the power spectrum, due to shear measurement and theoretical errors. To help the planning of future surveys, we summarize our results with comprehensive scaling relations which avoid the need for full Fisher matrix calculations.
Submitted to MNRAS. 10 pages, including 13 figures and 2 tables
References in corpus (16)
- Systematic Errors in Future Weak Lensing Surveys: Requirements and Prospects for Self-Calibration
- The Shear TEsting Programme 2: Factors affecting high precision weak lensing analyses
- Effect of Photometric Redshift Uncertainties on Weak Lensing Tomography
- First cosmic shear results from the Canada-France-Hawaii Telescope Wide Synoptic Legacy Survey
- Joint Galaxy-Lensing Observables and the Dark Energy
- The influence of baryons on the clustering of matter and weak lensing surveys
- Cosmic Shear Analysis with CFHTLS Deep data
- Effect of Hot Baryons on the Weak-Lensing Shear Power Spectrum
- Probing dark energy with the shear-ratio geometric test
- Dark Energy Tomography
- An Enlarged Cosmic Shear Survey with the William Herschel Telescope
- Measurement of Cosmic Shear with the Space Telescope Imaging Spectrograph
- Evaluating Dark Energy Probes using Multi-Dimensional Dark Energy Parameters
- Redshift and Shear Calibration: Impact on Cosmic Shear Studies and Survey Design
- Probing decisive answers to dark energy questions from cosmic complementarity and lensing tomography
- Color Tomography
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- Euclid preparation. XXXI. The effect of the variations in photometric passbands on photometric-redshift accuracy
- Bayesian model selection for dark energy using weak lensing forecasts
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