Wide-angle and relativistic effects in Fourier-space clustering statistics
arXiv:2207.12383 · doi:10.1103/PhysRevD.107.083528
Abstract
Galaxy power spectrum and bispectrum signals are distorted by peculiar velocities and other relativistic effects arising from a perturbed spacetime background. In addition, study of correlation functions of tracers in Fourier space is often done in the plane-parallel approximation under which it is assumed that line-of-sight (LOS) vectors are parallel. In this work we show that a simple perturbative procedure can be employed for a fast evaluation of beyond plane-parallel (wide-angle) corrections to the power spectrum and bispectrum. We also show that evolution of linear matter density fluctuations in a relativistic context can be found from a simple method. For the power spectrum at linear level, we compare leading order wide-angle contributions to multipoles of the galaxy power spectrum with those from non-integrated and integrated relativistic corrections and estimate their possible contamination on local fNL measurements to be of order a few. We also compute wide-angle corrections in the presence of nonlinear terms at one-loop order. For the bispectrum, we show that wide-angle effects alone, even with fully symmetric choices of LOS, give rise to imaginary, odd-parity multipoles of the galaxy bispectrum (dipole, octupole, etc.) which are in many cases larger than previously known ones of relativistic origin. We calculate these contributions and provide an estimator for measuring the leading order bispectrum dipole from data, using a symmetric LOS definition. Finally, we calculate the leading order corrections to multipoles of real plane-parallel bispectrum multipoles and estimate the apparent local fNL induced to be of order unity.
Minor improvements and corrections, discussion added about inclusion of window function, matches the published version
References in corpus (30)
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: Cosmological Implications from two Decades of Spectroscopic Surveys at the Apache Point observatory
- The imprints of primordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects
- New Perspective on Galaxy Clustering as a Cosmological Probe: General Relativistic Effects
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: measurement of the BAO and growth rate of structure of the luminous red galaxy sample from the anisotropic power spectrum between redshifts 0.6 and 1.0
- Gravity and Large-Scale Non-local Bias
- Dark Energy Survey Year 1 Results: Cosmological Constraints from Cluster Abundances and Weak Lensing
- Beyond the Linear-Order Relativistic Effect in Galaxy Clustering: Second-Order Gauge-Invariant Formalism
- Quantifying the tension with the Redshift Space Distortion data set
- Einstein's legacy in galaxy surveys
- The observed galaxy power spectrum in General Relativity
- The Gamma-Ray Pulsar Population of Globular Clusters: Implications for the GeV Excess
- Modeling relativistic contributions to the halo power spectrum dipole
- Complete Treatment of Galaxy Two-Point Statistics: Gravitational Lensing Effects and Redshift-Space Distortions
- Testing one-loop galaxy bias: Power spectrum
- Quantifying the Redshift Space Distortion of the Bispectrum I: Primordial Non-Gaussianity
- Impact of Relativistic Effects on the Primordial Non-Gaussianity Signature in the Large-Scale Clustering of Quasars
- Beware of commonly used approximations II: estimating systematic biases in the best-fit parameters
- Galaxy Power Spectrum in General Relativity
- Detecting the relativistic bispectrum in 21cm intensity maps
- Testing General Relativity on cosmological scales at redshift z ~ 1.5 with quasar and CMB lensing
- Local primordial non-Gaussianity in the relativistic galaxy bispectrum
- Quantifying the Redshift Space Distortion of the Bispectrum II: Induced Non-Gaussianity at Second Order Perturbation
- Nonlinear Redshift-Space Distortions in the Harmonic-space Galaxy Power Spectrum
- The relativistic galaxy number counts in the weak field approximation
- Full-sky bispectrum in redshift space for 21cm intensity maps
- Multi-wavelength spectroscopic probes: biases from neglecting light-cone effects
- Wide-angle effects on galaxy ellipticity correlations
- Joint analyses of 2D CMB lensing and 3D galaxy clustering in the spherical Fourier-Bessel basis
- Alcock-Paczynski effects on wide-angle galaxy statistics
- Non-linear power spectra in the synchronous gauge
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- Limits on primordial non-Gaussianities from BOSS galaxy-clustering data
- Cosmological inference from the EFTofLSS: the eBOSS QSO full-shape analysis
- Large Scale Limit of the Observed Galaxy Power Spectrum
- Multi-tracer power spectra and bispectra: Formalism
- Wide-angle effects in multi-tracer power spectra with Doppler corrections
- Wide-angle effects in the galaxy bispectrum
- Exact Modeling of Power Spectrum Multipole through Spherical Fourier-Bessel Basis
- Relativistic and wide-angle corrections to galaxy power spectra
- Primordial non-Gaussianity -- the effects of relativistic and wide-angle corrections to the power spectrum
- Using relativistic effects in large-scale structure to constrain astrophysical properties of galaxy populations
- Nonlinear Redshift-Space Distortions on the Full Sky
- Constraining primordial non-Gaussianity by combining photometric galaxy and 21cm intensity mapping surveys
- Euclid preparation. The impact of relativistic redshift-space distortions on two-point clustering statistics from the Euclid wide spectroscopic survey
- Linear Relativistic Corrections in the Spherical Fourier-Bessel Power Spectrum
- Doppler bias: impact of peculiar velocities on color selection and the large scale structure of galaxy surveys
- Separating Angular and Radial Modes with Spherical-Fourier Bessel Power Spectrum on All Scales and Implications for Systematics Mitigation
- Multi-tracing the primordial Universe with future surveys
- Detecting Relativistic Doppler in Galaxy Clustering with Tailored Galaxy Samples
- Detecting Relativistic Doppler by Multi-Tracing a Single Galaxy Population
- Multipoles of the galaxy bispectrum on a light cone: wide-separation and relativistic corrections
- Large-scale Modeling of the Observed Power Spectrum Multipoles