English

Cosmic voids: a novel probe to shed light on our Universe

Cosmology and Nongalactic Astrophysics 2019-03-14 v1

Abstract

Cosmic voids, the less dense patches of the Universe, are promising laboratories to extract cosmological information. Thanks to their unique low density character, voids are extremely sensitive to diffuse components such as neutrinos and dark energy, and represent ideal environments to study modifications of gravity, where the effects of such modifications are expected to be more prominent. Robust void-related observables, including for example redshift-space distortions (RSD) and weak lensing around voids, are a promising way to chase and test new physics. Cosmological analysis of the large-scale structure of the Universe predominantly relies on the high density regions. Current and upcoming surveys are designed to optimize the extraction of cosmological information from these zones, but leave voids under-exploited. A dense, large area spectroscopic survey with imaging capabilities is ideal to exploit the power of voids fully. Besides helping illuminate the nature of dark energy, modified gravity, and neutrinos, this survey will give access to a detailed map of under-dense regions, providing an unprecedented opportunity to observe and study a so far under-explored galaxy population.

Keywords

Cite

@article{arxiv.1903.05161,
  title  = {Cosmic voids: a novel probe to shed light on our Universe},
  author = {Alice Pisani and Elena Massara and David N. Spergel and David Alonso and Tessa Baker and Yan-Chuan Cai and Marius Cautun and Christopher Davies and Vasiliy Demchenko and Olivier Doré and Andy Goulding and Mélanie Habouzit and Nico Hamaus and Adam Hawken and Christopher M. Hirata and Shirley Ho and Bhuvnesh Jain and Christina D. Kreisch and Federico Marulli and Nelson Padilla and Giorgia Pollina and Martin Sahlén and Ravi K. Sheth and Rachel Somerville and Istvan Szapudi and Rien van de Weygaert and Francisco Villaescusa-Navarro and Benjamin D. Wandelt and Yun Wang},
  journal= {arXiv preprint arXiv:1903.05161},
  year   = {2019}
}

Comments

Science White Paper for the Astro2020 Decadal Survey, 5 pages text, 14 pages with references and affiliations