학술논문

Projected two- and three-point statistics: forecasts and mitigation of non-linear RSDs.
Document Type
Article
Source
Monthly Notices of the Royal Astronomical Society. May2021, Vol. 503 Issue 2, p2137-2156. 20p.
Subject
*POWER spectra
*GALAXY clusters
*LARGE scale structure (Astronomy)
*FORECASTING
*STATISTICS
*REDSHIFT
*INFLATIONARY universe
Language
ISSN
0035-8711
Abstract
The combination of two- and three-point clustering statistics of galaxies and the underlying matter distribution has the potential to break degeneracies between cosmological parameters and nuisance parameters and can lead to significantly tighter constraints on parameters describing the composition of the Universe and the dynamics of inflation. Here, we investigate the relation between biases in the estimated parameters and inaccurate modelling of non-linear redshift-space distortions for the power spectrum and bispectrum of projected galaxy density fields and lensing convergence. Non-linear redshift-space distortions are one of the leading systematic uncertainties in galaxy clustering. Projections along the line of sight suppress radial modes and are thus allowing a trade-off between biases due to non-linear redshift-space distortions and statistical uncertainties. We investigate this bias-error trade-off for a CMASS-like survey with a varying number of redshift bins. Improved modelling of the non-linear redshift-space distortions allows the recovery of more radial information when controlling for biases. Not modelling non-linear redshift-space distortions inflates error bars for almost all parameters by |$20{{\ \rm per\ cent}}$|⁠. The information loss for the amplitude of local non-Gaussianities is smaller, since it is best constrained from large scales. In addition, we show empirically that one can recover more than 99 per cent of the 3D power spectrum information if the depth of the tomographic bins is reduced to 10   h −1 Mpc. [ABSTRACT FROM AUTHOR]