Noise Estimates for Measurements of Weak Lensing from the Lyman-alpha Forest
arXiv:1706.08939 · doi:10.1093/mnras/sty806
Abstract
We have proposed a method for measuring weak lensing using the Lyman-alpha forest. Here we estimate the noise expected in weak lensing maps and power spectra for different sets of observational parameters. We find that surveys of the size and quality of the ones being done today and ones planned for the future will be able to measure the lensing power spectrum at a source redshift of z~2.5 with high precision and even be able to image the distribution of foreground matter with high fidelity on degree scales. For example, we predict that Lyman-alpha forest lensing measurement from the Dark Energy Spectroscopic Instrument survey should yield the mass fluctuation amplitude with statistical errors of 1.5%. By dividing the redshift range into multiple bins some tomographic lensing information should be accessible as well. This would allow for cosmological lensing measurements at higher redshift than are accessible with galaxy shear surveys and correspondingly better constraints on the evolution of dark energy at relatively early times.
8 pages, 8 figures, submitted to MNRAS
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- Lyman-alpha Forest Tomography from Background Galaxies: The First Megaparsec-Resolution Large-Scale Structure Map at z>2
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- Machine Learning Classifiers for Intermediate Redshift Emission Line Galaxies
- The CMB lensing bi-spectrum as a probe of modified gravity theories
- Intensity mapping of the 21cm emission: lensing
- Detection of Strongly Lensed Arcs in Galaxy Clusters with Transformers
- Renormalization group and UV completion of cosmological perturbations: Gravitational collapse as a critical phenomenon
- Reconstructing the Gravitational Lensing Potential from the Lyman- Forest
- Fast and accurate collapse-time predictions for collisionless matter
- Weak Lensing the non-Linear Ly-alpha Forest