Simulations for 21 cm radiation lensing at EoR redshifts
arXiv:1708.01235 · doi:10.1093/mnras/stx2733
Abstract
We introduce simulations aimed at assessing how well weak gravitational lensing of 21cm radiation from the Epoch of Reionization () can be measured by an SKA-like radio telescope. A simulation pipeline has been implemented to study the performance of lensing reconstruction techniques. We show how well the lensing signal can be reconstructed using the three-dimensional quadratic lensing estimator in Fourier space assuming different survey strategies. The numerical code introduced in this work is capable of dealing with issues that can not be treated analytically such as the discreteness of visibility measurements and the inclusion of a realistic model for the antennae distribution. This paves the way for future numerical studies implementing more realistic reionization models, foreground subtraction schemes, and testing the performance of lensing estimators that take into account the non-Gaussian distribution of HI after reionization. If multiple frequency channels covering are combined, Phase 1 of SKA-Low should be able to obtain good quality images of the lensing potential with a total resolution of arcmin. The SKA-Low Phase 2 should be capable of providing images with high-fidelity even using data from . We perform tests aimed at evaluating the numerical implementation of the mapping reconstruction. We also discuss the possibility of measuring an accurate lensing power spectrum. Combining data from using the SKA2-Low telescope model, we find constraints comparable to sample variance in the range , even for survey areas as small as $25\mbox{ deg}^2$.
23 pages, 18 figures. Accepted for pubblication in MNRAS
References in corpus (11)
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Baryon Acoustic Oscillation Intensity Mapping as a Test of Dark Energy
- Measurement of 21 cm brightness fluctuations at z ~ 0.8 in cross-correlation
- Late-time cosmology with 21cm intensity mapping experiments
- How accurately can 21 cm tomography constrain cosmology?
- Testing General Relativity with 21 cm intensity mapping
- A Fast Method for Power Spectrum and Foreground Analysis for 21 cm Cosmology
- The mass-concentration relation in lensing clusters: the role of statistical biases and selection effects
- Gravitational Lensing of Cosmological 21cm Emission
- Cosmological Information in the Gravitational Lensing of Pregalactic HI
- Galaxy-cluster masses via 21st-century measurements of lensing of 21-cm fluctuations