English

Testing Inflation with Large Scale Structure: Connecting Hopes with Reality

Cosmology and Nongalactic Astrophysics 2014-12-16 v1 High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

The statistics of primordial curvature fluctuations are our window into the period of inflation, where these fluctuations were generated. To date, the cosmic microwave background has been the dominant source of information about these perturbations. Large scale structure is however from where drastic improvements should originate. In this paper, we explain the theoretical motivations for pursuing such measurements and the challenges that lie ahead. In particular, we discuss and identify theoretical targets regarding the measurement of primordial non-Gaussianity. We argue that when quantified in terms of the local (equilateral) template amplitude fNLlocf_{\rm NL}^{\rm loc} (fNLeqf_{\rm NL}^{\rm eq}), natural target levels of sensitivity are ΔfNLloc,eq.1\Delta f_{\rm NL}^{\rm loc, eq.} \simeq 1. We highlight that such levels are within reach of future surveys by measuring 2-, 3- and 4-point statistics of the galaxy spatial distribution. This paper summarizes a workshop held at CITA (University of Toronto) on October 23-24, 2014.

Keywords

Cite

@article{arxiv.1412.4671,
  title  = {Testing Inflation with Large Scale Structure: Connecting Hopes with Reality},
  author = {Marcelo Alvarez and Tobias Baldauf and J. Richard Bond and Neal Dalal and Roland de Putter and Olivier Doré and Daniel Green and Chris Hirata and Zhiqi Huang and Dragan Huterer and Donghui Jeong and Matthew C. Johnson and Elisabeth Krause and Marilena Loverde and Joel Meyers and P. Daniel Meerburg and Leonardo Senatore and Sarah Shandera and Eva Silverstein and Anže Slosar and Kendrick Smith and Matias Zaldarriaga and Valentin Assassi and Jonathan Braden and Amir Hajian and Takeshi Kobayashi and George Stein and Alexander van Engelen},
  journal= {arXiv preprint arXiv:1412.4671},
  year   = {2014}
}

Comments

27 pages + references

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