English

Minimally Parametric Power Spectrum Reconstruction from the Lyman-alpha Forest

Cosmology and Nongalactic Astrophysics 2011-05-16 v2

Abstract

Current results from the Lyman alpha forest assume that the primordial power spectrum of density perturbations follows a simple power law form, with running. We present the first analysis of Lyman alpha data to study the effect of relaxing this strong assumption on primordial and astrophysical constraints. We perform a large suite of numerical simulations, using them to calibrate a minimally parametric framework for describing the power spectrum. Combined with cross-validation, a statistical technique which prevents over-fitting of the data, this framework allows us to reconstruct the power spectrum shape without strong prior assumptions. We find no evidence for deviation from scale-invariance; our analysis also shows that current Lyman alpha data do not have sufficient statistical power to robustly probe the shape of the power spectrum at these scales. In contrast, the ongoing Baryon Oscillation Sky Survey (BOSS) will be able to do so with high precision. Furthermore, this near-future data will be able to break degeneracies between the power spectrum shape and astrophysical parameters.

Keywords

Cite

@article{arxiv.1010.1519,
  title  = {Minimally Parametric Power Spectrum Reconstruction from the Lyman-alpha Forest},
  author = {Simeon Bird and Hiranya V. Peiris and Matteo Viel and Licia Verde},
  journal= {arXiv preprint arXiv:1010.1519},
  year   = {2011}
}

Comments

11 pages plus appendices, 8 figures. v2: matches version published in MNRAS. Some clarifications to discussion and exposition, updated references

R2 v1 2026-06-21T16:25:25.631Z