Literature DB >> 23003237

Lensing of 21-cm fluctuations by primordial gravitational waves.

Laura Book1, Marc Kamionkowski, Fabian Schmidt.   

Abstract

Weak-gravitational-lensing distortions to the intensity pattern of 21-cm radiation from the dark ages can be decomposed geometrically into curl and curl-free components. Lensing by primordial gravitational waves induces a curl component, while the contribution from lensing by density fluctuations is strongly suppressed. Angular fluctuations in the 21-cm background extend to very small angular scales, and measurements at different frequencies probe different shells in redshift space. There is thus a huge trove of information with which to reconstruct the curl component of the lensing field, allowing tensor-to-scalar ratios conceivably as small as r~10(-9)-far smaller than those currently accessible-to be probed.

Year:  2012        PMID: 23003237     DOI: 10.1103/PhysRevLett.108.211301

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Peering into the dark (ages) with low-frequency space interferometers: Using the 21-cm signal of neutral hydrogen from the infant universe to probe fundamental (Astro)physics.

Authors:  Léon V E Koopmans; Rennan Barkana; Mark Bentum; Gianni Bernardi; Albert-Jan Boonstra; Judd Bowman; Jack Burns; Xuelei Chen; Abhirup Datta; Heino Falcke; Anastasia Fialkov; Bharat Gehlot; Leonid Gurvits; Vibor Jelić; Marc Klein-Wolt; Joseph Lazio; Daan Meerburg; Garrelt Mellema; Florent Mertens; Andrei Mesinger; André Offringa; Jonathan Pritchard; Benoit Semelin; Ravi Subrahmanyan; Joseph Silk; Cathryn Trott; Harish Vedantham; Licia Verde; Saleem Zaroubi; Philippe Zarka
Journal:  Exp Astron (Dordr)       Date:  2021-09-03       Impact factor: 2.012

  1 in total

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