Towards Constraints on Dark Energy from Absorption Spectra of Close Quasar Pairs
Adam Lidz, Lam Hui, Arlin P.S. Crotts, Matias Zaldarriaga

TL;DR
This paper presents a new method using absorption spectra of close quasar pairs to constrain dark energy, demonstrating its potential with simulations and initial observations, and discussing future observational strategies.
Contribution
The paper introduces a maximum likelihood method comparing auto and cross spectra of Lyman-alpha absorption to constrain dark energy parameters, accounting for redshift distortions.
Findings
Weak constraints on Omega_Lambda from initial data
Disfavoring Einstein-de-Sitter cosmology at ~2 sigma
Future observations with close pairs and high spectral resolution can improve constraints
Abstract
A comparison between the line of sight power spectrum of absorption in the Lyman-alpha forest and the cross power spectrum between the absorption in neighboring lines of sight offers an evolution-free means to constrain the cosmological constant, or dark energy. Using cosmological simulations, we consider a maximum likelihood method to obtain constraints from this comparison. In our method, measurements of the auto and cross spectra from observations are compared with those from a multi-parameter grid of simulated models of the intergalactic medium. We then marginalize over nuisance parameters to obtain constraints on the cosmological constant. Redshift space distortions due to peculiar velocities and thermal broadening, a potential difficulty in applying this test, are explicitly modeled in our simulations. To illustrate our method, we measure the cross spectrum from a new sample of…
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Taxonomy
TopicsAdaptive optics and wavefront sensing · Galaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research
