Bispectrum covariance in the flat-sky limit
arXiv:0907.2901 · doi:10.1051/0004-6361/200912906
Abstract
To probe cosmological fields beyond the Gaussian level, three-point statistics can be used, all of which are related to the bispectrum. Hence, measurements of CMB anisotropies, galaxy clustering, and weak gravitational lensing alike have to rely upon an accurate theoretical background concerning the bispectrum and its noise properties. If only small portions of the sky are considered, it is often desirable to perform the analysis in the flat-sky limit. We aim at a formal, detailed derivation of the bispectrum covariance in the flat-sky approximation, focusing on a pure two-dimensional Fourier-plane approach. We define an unbiased estimator of the bispectrum, which takes the average over the overlap of annuli in Fourier space, and compute its full covariance. The outcome of our formalism is compared to the flat-sky spherical harmonic approximation in terms of the covariance, the behavior under parity transformations, and the information content. We introduce a geometrical interpretation of the averaging process in the estimator, thus providing an intuitive understanding. Contrary to foregoing work, we find a difference by a factor of two between the covariances of the Fourier-plane and the spherical harmonic approach. We argue that this discrepancy can be explained by the differing behavior with respect to parity. However, in an exemplary analysis it is demonstrated that the Fisher information of both formalisms agrees to high accuracy. Via the geometrical interpretation we are able to link the normalization in the bispectrum estimator to the area enclosed by the triangle configuration at consideration as well as to the Wigner symbol, which leads to convenient approximation formulae for the covariances of both approaches.
13 pages, 5 figures; minor changes to match accepted version; published in Astronomy and Astrophysics
References in corpus (3)
Cited by in corpus (30)
- Probing Cosmology with Weak Lensing Minkowski Functionals
- Information content of weak lensing power spectrum and bispectrum: including the non-Gaussian error covariance matrix
- A wide-angle outflow with the simultaneous presence of a high-velocity jet in the high-mass Cepheus A HW2 system
- On the impact of galaxy bias uncertainties on primordial non-Gaussianity constraints
- Galaxy redshift-space bispectrum: the Importance of Being Anisotropic
- Optimal capture of non-Gaussianity in weak lensing surveys: power spectrum, bispectrum and halo counts
- Maximal compression of the redshift space galaxy power spectrum and bispectrum
- Impact of the non-Gaussian covariance of the weak lensing power spectrum and bispectrum on cosmological parameter estimation
- Sensitivity for 21cm Bispectrum from Epoch of Reionization
- Enhancing BOSS bispectrum cosmological constraints with maximal compression
- Matter trispectrum: theoretical modelling and comparison to N-body simulations
- Towards optimal cosmological parameter recovery from compressed bispectrum statistics
- Modelling large-scale halo bias using the bispectrum
- Geometrical compression: a new method to enhance the BOSS galaxy bispectrum monopole constraints
- Forecasts of non-Gaussian parameter spaces using Box-Cox transformations
- Self-calibration of weak lensing systematic effects using combined two- and three-point statistics
- The squeezed matter bispectrum covariance with responses
- Extracting bias using the cross-bispectrum: An EoR and 21 cm-[CII]-[CII] case study
- A roadmap to cosmological parameter analysis with third-order shear statistics I: Modelling and validation
- Tidal alignments as a contaminant of the galaxy bispectrum
- The 21 cm-kSZ-kSZ Bispectrum during the Epoch of Reionization
- Controlling intrinsic-shear alignment in three-point weak lensing statistics
- A roadmap to cosmological parameter analysis with third-order shear statistics II: Analytic covariance estimate
- How well do third-order aperture mass statistics separate E- and B-modes?
- The bispectrum covariance beyond Gaussianity: A log-normal approach
- A test of the Suyama-Yamaguchi inequality from weak lensing
- Projected two- and three-point statistics: Forecasts and mitigation of non-linear RSDs
- Breaking degeneracies with the Sunyaev-Zeldovich full bispectrum
- Weak lensing deflection of three-point correlation functions
- Dark Energy Survey Year 3 Results: Three-Point Shear Correlations and Mass Aperture Moments