4.7 Article

Cosmic tidal reconstruction

Journal

PHYSICAL REVIEW D
Volume 93, Issue 10, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.93.103504

Keywords

-

Funding

  1. Canada Foundation for Innovation under Compute Canada
  2. Government of Ontario
  3. Ontario Research Fund Research Excellence
  4. University of Toronto
  5. Chinese MoST 863 program [2012AA121701]
  6. CAS Science Strategic Priority Research Program [XDB09000000]
  7. NSFC [11373030, 11403071, 11473032]
  8. IAS at Tsinghua University
  9. CHEP at Peking University
  10. NSERC
  11. Government of Canada through Industry Canada
  12. Province of Ontario through the Ministry of Research Innovation

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The gravitational coupling of a long-wavelength tidal field with small-scale density fluctuations leads to anisotropic distortions of the locally measured small-scale matter correlation function. Since the local correlation function is known to be statistically isotropic in the absence of such tidal interactions, the tidal distortions can be used to reconstruct the long-wavelength tidal field and large-scale density field in analogy with the cosmic microwave background lensing reconstruction. In this paper we present the theoretical framework of cosmic tidal reconstruction and test the reconstruction in numerical simulations. We find that the density field on large scales can be reconstructed with good accuracy and the cross-correlation coefficient between the reconstructed density field and the original density field is greater than 0.9 on large scales (k less than or similar to 0.1 h/Mpc), with the filter scale similar to 1.25 Mpc/h. This is useful in the 21 cm intensity mapping survey, where the long-wavelength radial modes are lost due to a foreground subtraction process.

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