The full-sky relativistic correlation function and power spectrum of galaxy number counts: I. Theoretical aspects
arXiv:1708.00492 · doi:10.1088/1475-7516/2018/03/019
Abstract
We derive an exact expression for the correlation function in redshift shells including all the relativistic contributions. This expression, which does not rely on the distant-observer or flat-sky approximation, is valid at all scales and includes both local relativistic corrections and integrated contributions, like gravitational lensing. We present two methods to calculate this correlation function, one which makes use of the angular power spectrum C_ell(z1,z2) and a second method which evades the costly calculations of the angular power spectra. The correlation function is then used to define the power spectrum as its Fourier transform. In this work theoretical aspects of this procedure are presented, together with quantitative examples. In particular, we show that gravitational lensing modifies the multipoles of the correlation function and of the power spectrum by a few percent at redshift z=1 and by up to 30% and more at z=2. We also point out that large-scale relativistic effects and wide-angle corrections generate contributions of the same order of magnitude and have consequently to be treated in conjunction. These corrections are particularly important at small redshift, z=0.1, where they can reach 10%. This means in particular that a flat-sky treatment of relativistic effects, using for example the power spectrum, is not consistent.
49 pages, 19 figures. v2: minor corrections, references added, typos corrected in eqs. (2.3)-(2.6). Matches version published in JCAP
References in corpus (9)
- The DESI Experiment Part I: Science,Targeting, and Survey Design
- New Perspective on Galaxy Clustering as a Cosmological Probe: General Relativistic Effects
- Anisotropic Magnification Distortion of the 3D Galaxy Correlation: I. Real Space
- The impact of relativistic effects on cosmological parameter estimation
- The WiggleZ Dark Energy Survey: measuring the cosmic growth rate with the two-point galaxy correlation function
- Improving constraints on the growth rate of structure by modelling the density-velocity cross-correlation in the 6dF Galaxy Survey
- Anisotropic Magnification Distortion of the 3D Galaxy Correlation: II. Fourier and Redshift Space
- Lensing Corrections to Features in the Angular Two-Point Correlation Function and Power Spectrum
- A direct method to compute the galaxy count angular correlation function including redshift-space distortions
Cited by in corpus (58)
- Beyond the plane-parallel approximation for redshift surveys
- Cosmology in the era of Euclid and the Square Kilometre Array
- Interpreting measurements of the anisotropic galaxy power spectrum
- The BINGO Project I: Baryon Acoustic Oscillations from Integrated Neutral Gas Observations
- Imprints of relativistic effects on the asymmetry of the halo cross-correlation function: from linear to non-linear scales
- On the importance of lensing for galaxy clustering in photometric and spectroscopic surveys
- Growth of Cosmic Structure
- The dipole of the galaxy bispectrum
- The Full-Sky Angular Bispectrum in Redshift Space
- COFFE: a code for the full-sky relativistic galaxy correlation function
- Beyond the traditional Line-of-Sight approach of cosmological angular statistics
- Optimised angular power spectra for spectroscopic galaxy surveys
- Galaxy Power Spectrum in General Relativity
- Galaxy Two-Point Correlation Function in General Relativity
- The Limited Accuracy of Linearized Gravity
- Constraining spatial curvature with large-scale structure
- Wide-angle and relativistic effects in Fourier-space clustering statistics
- Wide-angle redshift-space distortions at quasi-linear scales: cross-correlation functions from Zel'dovich approximation
- Detectability of the gravitational redshift effect from the asymmetric galaxy clustering
- Analyzing clustering of astrophysical gravitational-wave sources: Luminosity-distance space distortions
- Modelling the asymmetry of the halo cross-correlation function with relativistic effects at quasi-linear scales
- Constraints on the growth rate using the observed galaxy power spectrum
- The observed number counts in luminosity distance space
- A case study for measuring the relativistic dipole of a galaxy cross-correlation with the Dark Energy Spectroscopic Instrument
- Constraining the growth rate by combining multiple future surveys
- Cosmological Angular Trispectra and Non-Gaussian Covariance
- Generalisation of the Kaiser Rocket effect in general relativity in the wide-angle galaxy 2-point correlation function
- Combining gravitational lensing and gravitational redshift to measure the anisotropic stress with future galaxy surveys
- Observing relativistic features in large-scale structure surveys -- II: Doppler magnification in an ensemble of relativistic simulations
- Cosmological Information Contents on the Light-Cone
- General Relativistic Cosmological N-body Simulations I: time integration
- Wide-angle effects in multi-tracer power spectra with Doppler corrections
- Forecasts of cosmological constraints from HI intensity mapping with FAST, BINGO & SKA-I
- Testing the equivalence principle across the Universe: a model-independent approach with galaxy multi-tracing
- Relativistic distortions in galaxy density-ellipticity correlations: gravitational redshift and peculiar velocity effects
- Small scale effects in the observable power spectrum at large angular scales
- Cosmological test of local position invariance from the asymmetric galaxy clustering
- Exact Modeling of Power Spectrum Multipole through Spherical Fourier-Bessel Basis
- The flat-sky approximation to galaxy number counts -- redshift space correlation function
- Magnification and evolution bias of transient sources: GWs and SNIa
- Primordial non-Gaussianity -- the effects of relativistic and wide-angle corrections to the power spectrum
- Baryon acoustic oscillations from HI intensity mapping: the importance of cross-correlations in the monopole and quadrupole
- Gravitational waves and galaxies cross-correlations: a forecast on GW biases for future detectors
- Redshift-space distortions from vector perturbations II: Anisotropic signal
- On the feature of the matter two-point function
- Perturbations and Linearization Stability of Closed Friedmann Universes
- Impact of lensing magnification on the analysis of galaxy clustering in redshift space
- Relativistic imprints on dispersion measure space distortions
- Using relativistic effects in large-scale structure to constrain astrophysical properties of galaxy populations
- Nonlinear Redshift-Space Distortions on the Full Sky
- Linear Relativistic Corrections in the Spherical Fourier-Bessel Power Spectrum
- Projected two- and three-point statistics: Forecasts and mitigation of non-linear RSDs
- The string theory swampland in the Euclid, SKA and Vera Rubin observatory era
- Pair Counting without Binning -- A New Approach to Correlation Functions in Clustering Statistics
- Largest scales from the largest galaxy surveys: the pseudo Karhunen-Loève method
- Probing beyond-Horndeski gravity on ultra-large scales
- Large-scale Modeling of the Observed Power Spectrum Multipoles
- The Sensitivity of PUEO to Cosmogenic Neutrinos and Exotic Physics Scenarios