A general relativistic signature in the galaxy bispectrum: the local effects of observing on the lightcone
arXiv:1610.03351 · doi:10.1088/1475-7516/2017/03/034
Abstract
Next-generation galaxy surveys will increasingly rely on the galaxy bispectrum to improve cosmological constraints, especially on primordial non-Gaussianity. A key theoretical requirement that remains to be developed is the analysis of general relativistic effects on the bispectrum, which arise from observing galaxies on the past lightcone, {as well as from relativistic corrections to the dynamics}. {As an initial step towards a fully relativistic analysis of the galaxy bispectrum, we compute for the first time the local relativistic lightcone effects on the bispectrum,} which come from Doppler and gravitational potential contributions. For the galaxy bispectrum, the problem is much more complex than for the power spectrum, since we need the lightcone corrections at second order. Mode-coupling contributions at second order mean that relativistic corrections can be non-negligible at smaller scales than in the case of the power spectrum. In a primordial Gaussian universe, we show that the local lightcone corrections for squeezed shapes at mean that the bispectrum can differ from the Newtonian prediction by when the short modes are . These relativistic projection effects, if ignored in the analysis of observations, could be mistaken for primordial non-Gaussianity. For upcoming surveys which probe equality scales and beyond, {all relativistic lightcone effects and relativistic dynamical corrections should be included} for an accurate measurement of primordial non-Gaussianity.
v4: Version accepted by JCAP. Assumptions clarified; typos and numerical errors fixed
References in corpus (4)
Cited by in corpus (20)
- Primordial Non-Gaussianity from Biased Tracers: Likelihood Analysis of Real-Space Power Spectrum and Bispectrum
- Bispectrum-window convolution via Hankel transform
- Detecting the relativistic bispectrum in 21cm intensity maps
- Local primordial non-Gaussianity in the relativistic galaxy bispectrum
- Large Scale Limit of the Observed Galaxy Power Spectrum
- Multi-tracer power spectra and bispectra: Formalism
- Full-sky bispectrum in redshift space for 21cm intensity maps
- Second-order gauge-invariant formalism for the cosmological observables: Complete verification of their gauge-invariance
- Observing relativistic features in large-scale structure surveys -- II: Doppler magnification in an ensemble of relativistic simulations
- Testing the equivalence principle on cosmological scales using the odd multipoles of galaxy cross-power spectrum and bispectrum
- Wide-angle effects in the galaxy bispectrum
- Apparent parity violation in the observed galaxy trispectrum
- Covariant Decomposition of The Non-Linear Galaxy Number Counts and Their Monopole
- Decoupling Local Primordial non-Gaussianity from Relativistic Effects in the Galaxy Bispectrum
- The art of building a smooth cosmic distance ladder in a perturbed universe
- Incompatibility of Standard Galaxy Bias Models in General Relativity
- Including relativistic and primordial Non-Gaussianity contributions in cosmological simulations by modifying the initial condition
- Multipoles of the galaxy bispectrum on a light cone: wide-separation and relativistic corrections
- Non-Gaussianity in the Squeezed Three-Point Correlation from the Relativistic Effects
- Living in a Non-Flat Universe: Theoretical Formalism