Cosmological Measurements with General Relativistic Galaxy Correlations
arXiv:1505.06179 · doi:10.1088/1475-7516/2016/05/009
Abstract
We investigate the cosmological dependence and the constraining power of large-scale galaxy correlations, including all redshift-distortions, wide-angle, lensing and gravitational potential effects on linear scales. We analyze the cosmological information present in the lensing convergence and in the gravitational potential terms describing the so-called "relativistic effects," and we find that, while smaller than the information contained in intrinsic galaxy clustering, it is not negligible. We investigate how neglecting them does bias cosmological measurements performed by future spectroscopic and photometric large-scale surveys such as SKA and Euclid. We perform a Fisher analysis using the CLASS code, modified to include scale-dependent galaxy bias and redshift-dependent magnification and evolution bias. Our results show that neglecting relativistic terms introduces an error in the forecasted precision in measuring cosmological parameters of the order of a few tens of percent, in particular when measuring the matter content of the Universe and primordial non-Gaussianity parameters. Therefore, we argue that radial correlations and integrated relativistic terms need to be taken into account when forecasting the constraining power of future large-scale number counts of galaxy surveys.
18 pages, 10 figures
References in corpus (21)
- Wide-Field InfrarRed Survey Telescope-Astrophysics Focused Telescope Assets WFIRST-AFTA 2015 Report
- Cosmology and Fundamental Physics with the Euclid Satellite
- The imprints of primordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects
- Effects of Scale-Dependent Non-Gaussianity on Cosmological Structures
- Cosmology with the SPHEREX All-Sky Spectral Survey
- A generalized local ansatz and its effect on halo bias
- Einstein's legacy in galaxy surveys
- Measuring the lensing potential with tomographic galaxy number counts
- Constraining Primordial Non-Gaussianity with High-Redshift Probes
- Designing an Inflation Galaxy Survey: how to measure using scale-dependent galaxy bias
- Strongly Scale-dependent Non-Gaussianity
- Scale-Dependent Non-Gaussianity as a Generalization of the Local Model
- A new method for the Alcock-Paczynski test
- Probing primordial non-Gaussianity via iSW measurements with SKA continuum surveys
- First constraints on the running of non-Gaussianity
- Runnings in the Curvaton
- 3-dimensional spherical analyses of cosmological spectroscopic surveys
- Relativistic corrections and non-Gaussianity in radio continuum surveys
- Cosmology on the Largest Scales with the SKA
- Neglecting Primordial non-Gaussianity Threatens Future Cosmological Experiment Accuracy
- Cosmology from HI galaxy surveys with the SKA
Cited by in corpus (61)
- Fundamental Physics with the Square Kilometre Array
- Ultra large-scale cosmology in next-generation experiments with single tracers
- Constraining Primordial non-Gaussianity with Bispectrum and Power Spectum from Upcoming Optical and Radio Surveys
- Determining the progenitors of merging black-hole binaries
- Measuring the lensing potential with tomographic galaxy number counts
- The full-sky relativistic correlation function and power spectrum of galaxy number counts: I. Theoretical aspects
- Can we actually constrain using the scale-dependent bias effect? An illustration of the impact of galaxy bias uncertainties using the BOSS DR12 galaxy power spectrum
- The observed galaxy power spectrum in General Relativity
- Curvature constraints from Large Scale Structure
- Euclid preparation: XIX. Impact of magnification on photometric galaxy clustering
- Predictions for local PNG bias in the galaxy power spectrum and bispectrum and the consequences for constraints
- Cosmological perturbation effects on gravitational-wave luminosity distance estimates
- Observational signatures of modified gravity on ultra-large scales
- On the importance of lensing for galaxy clustering in photometric and spectroscopic surveys
- The Hunt for Primordial Interactions in the Large Scale Structures of the Universe
- Lensing convergence and the neutrino mass scale in galaxy redshift surveys
- Relativistic wide-angle galaxy bispectrum on the light-cone
- Impact of Relativistic Effects on the Primordial Non-Gaussianity Signature in the Large-Scale Clustering of Quasars
- Simulated multi-tracer analyses with HI intensity mapping
- Cluster-void degeneracy breaking: Neutrino properties and dark energy
- Beware of commonly used approximations II: estimating systematic biases in the best-fit parameters
- Disantangling the effects of Doppler velocity and primordial non-Gaussianity in galaxy power spectra
- Probing the primordial Universe with MeerKAT and DES
- Optimised angular power spectra for spectroscopic galaxy surveys
- Probing primordial features with next-generation photometric and radio surveys
- Galaxy Two-Point Correlation Function in General Relativity
- Synergies between intensity maps of hydrogen lines
- The observed galaxy bispectrum from single-field inflation in the squeezed limit
- Higher order relativistic galaxy number counts: dominating terms
- Local primordial non-Gaussianity in the relativistic galaxy bispectrum
- Lensing convergence in galaxy clustering in LambdaCDM and beyond
- Constraining primordial non-Gaussianity by combining next-generation galaxy and 21 cm intensity mapping surveys
- Primordial trispectrum from kSZ tomography
- Probing primordial non-Gaussianity with Fast Radio Bursts
- Post-inflationary axion isocurvature perturbations facing CMB and large-scale structure
- On cosmological bias due to the magnification of shear and position samples in modern weak lensing analyses
- The relativistic galaxy number counts in the weak field approximation
- Multi-wavelength spectroscopic probes: biases from neglecting light-cone effects
- Measuring ISW with next-generation radio surveys
- Probing CDM cosmology with the Evolutionary Map of the Universe survey
- Light-Cone Observables and Gauge-Invariance in the Geodesic Light-Cone Formalism
- Effects of primordial black holes quantum gravity decay on galaxy clustering
- General Relativistic corrections in density-shear correlations
- Generalisation of the Kaiser Rocket effect in general relativity in the wide-angle galaxy 2-point correlation function
- Observing relativistic features in large-scale structure surveys -- I: Multipoles of the power spectrum
- The full-sky Spherical Fourier-Bessel power spectrum in general relativity
- Large-scale imprint of relativistic effects in the cosmic magnification
- Detectable Data-driven Features in the Primordial Scalar Power Spectrum
- Gravitational Redshifts in Clusters and Voids
- Decoupling Local Primordial non-Gaussianity from Relativistic Effects in the Galaxy Bispectrum
- 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
- Euclid preparation. The impact of relativistic redshift-space distortions on two-point clustering statistics from the Euclid wide spectroscopic survey
- Understanding the relativistic overdensity of galaxy surveys
- Constraining primordial non-Gaussianity by combining photometric galaxy and 21cm intensity mapping surveys
- Multi-tracing the primordial Universe with future surveys
- Doppler bias: impact of peculiar velocities on color selection and the large scale structure of galaxy surveys
- Structure in Galaxy Distribution. III. Fourier Transforming the Universe
- Cosmological Simulations of Number Counts
- Gravitational redshift in the void-galaxy cross-correlation function in redshift space
- Multi-wavelength spectroscopic probes: prospects for primordial non-Gaussianity and relativistic effects