Weak Lensing the non-Linear Ly-alpha Forest

Fuente: arXiv
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Autori principali: Shaw, Patrick, Croft, Rupert A. C., Metcalf, R. Benton
Natura: Preprint
Pubblicazione: 2022
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author Shaw, Patrick
Croft, Rupert A. C.
Metcalf, R. Benton
author_facet Shaw, Patrick
Croft, Rupert A. C.
Metcalf, R. Benton
contents We evaluate the performance of the Lyman-$α$ forest weak gravitational lensing estimator of Metcalf et al. on forest data from hydrodynamic simulations and ray-traced simulated lensing potentials. We compare the results to those obtained from the Gaussian random field simulated Ly$α$ forest data and lensing potentials used in previous work. We find that the estimator is able to reconstruct the lensing potentials from the more realistic data, and investigate dependence on spectrum signal to noise. The non-linearity and non-Gaussianity in this forest data arising from gravitational instability and hydrodynamics causes a reduction in signal to noise by a factor of $\sim2.7$ for noise free data and a factor of $\sim 1.5$ for spectra with signal to noise of order unity (comparable to current observational data). Compared to Gaussian field lensing potentials, using ray-traced potentials from N-body simulations incurs a further signal to noise reduction of a factor of $\sim1.3$ at all noise levels. The non-linearity in the forest data is also observed to increase bias in the reconstructed potentials by $5-25\%$, and the ray-traced lensing potential further increases the bias by $20-30\%$. We demonstrate methods for mitigating these issues including Gaussianization and bias correction which could be used in real observations.
format Preprint
id arxiv_https___arxiv_org_abs_2209_04564
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Weak Lensing the non-Linear Ly-alpha Forest
Shaw, Patrick
Croft, Rupert A. C.
Metcalf, R. Benton
Cosmology and Nongalactic Astrophysics
We evaluate the performance of the Lyman-$α$ forest weak gravitational lensing estimator of Metcalf et al. on forest data from hydrodynamic simulations and ray-traced simulated lensing potentials. We compare the results to those obtained from the Gaussian random field simulated Ly$α$ forest data and lensing potentials used in previous work. We find that the estimator is able to reconstruct the lensing potentials from the more realistic data, and investigate dependence on spectrum signal to noise. The non-linearity and non-Gaussianity in this forest data arising from gravitational instability and hydrodynamics causes a reduction in signal to noise by a factor of $\sim2.7$ for noise free data and a factor of $\sim 1.5$ for spectra with signal to noise of order unity (comparable to current observational data). Compared to Gaussian field lensing potentials, using ray-traced potentials from N-body simulations incurs a further signal to noise reduction of a factor of $\sim1.3$ at all noise levels. The non-linearity in the forest data is also observed to increase bias in the reconstructed potentials by $5-25\%$, and the ray-traced lensing potential further increases the bias by $20-30\%$. We demonstrate methods for mitigating these issues including Gaussianization and bias correction which could be used in real observations.
title Weak Lensing the non-Linear Ly-alpha Forest
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2209.04564