Quadratic shape biases in three-dimensional halo intrinsic alignments
arXiv:2306.00969 · doi:10.1088/1475-7516/2023/08/068
Abstract
Understanding the nonlinear relation between the shapes of halos or galaxies and the surrounding matter distribution is essential in accurate modeling of their intrinsic alignments. In the perturbative treatment, such nonlinear relation of the intrinsic alignments appears as higher-order shape bias parameters. In this paper, we present accurate measurements of the quadratic shape bias parameters by combining the \emph{full three-dimensional} power spectrum of the intrinsic alignments (i.e., without any projection) with the quadratic field method. In order to benefit from the full three-dimensional power spectrum we employ the spherical tensor decomposition of the three-dimensional shape field and measure their power spectra for the first time. In particular, we detect the vector and tensor power spectra in this basis, which cannot be explained by the widely-used nonlinear alignment model. Further, by cross-correlating the three-dimensional halo shape field with the quadratic shape bias operators from the initial condition of the same simulation to cancel cosmic variance, we effectively extract bispectrum information and detect quadratic shape bias parameters in the intrinsic alignments with high significance for the first time. We also compare these measurements with the prediction where quadratic shape biases are dynamically generated from the linear Lagrangian shape bias through the large-scale bulk flow. We find general agreement for all three biases with small deviations, which in practice could be negligible for the current photometric surveys. This implies that the advection prediction for the higher-order shape biases can be used as a prior in the cosmological analyses of intrinsic alignments.
19 pages, 5 figures; Minor changes to match version accepted for publication in JCAP
References in corpus (17)
- Transients from Initial Conditions in Cosmological Simulations
- Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements
- Gravity and Large-Scale Non-local Bias
- Intrinsic galaxy alignments from the 2SLAQ and SDSS surveys: luminosity and redshift scalings and implications for weak lensing surveys
- Constraints on intrinsic alignment contamination of weak lensing surveys using the MegaZ-LRG sample
- Intrinsic alignments of SDSS-III BOSS LOWZ sample galaxies
- Understanding higher-order nonlocal halo bias at large scales by combining the power spectrum with the bispectrum
- The Gravitational Shear--Intrinsic Ellipticity Correlation Functions of Luminous Red Galaxies in Observation and in the CDM Model
- An EFT description of galaxy intrinsic alignments
- Near optimal bispectrum estimators for large-scale structure
- Tightening geometric and dynamical constraints on dark energy and gravity: galaxy clustering, intrinsic alignment and kinetic Sunyaev-Zel'dovich effect
- Galaxy shape statistics in the effective field theory
- First Constraints on Growth Rate from Redshift-Space Ellipticity Correlations of SDSS Galaxies at
- Constraints on anisotropic primordial non-Gaussianity from intrinsic alignments of SDSS-III BOSS galaxies
- Gravitational wave fossils in nonlinear regime: halo tidal bias and intrinsic alignments from gravitational wave separate universe simulations
- Lagrangian approach to super-sample effects on biased tracers at field level: galaxy density fields and intrinsic alignments
- Integrated perturbation theory for cosmological tensor fields. III. Projection effects
Cited by in corpus (11)
- HYMALAIA: A Hybrid Lagrangian Model for Intrinsic Alignments
- Imprints of primordial magnetic fields on intrinsic alignments of galaxies
- Nonlinear redshift space distortion in halo ellipticity correlations: Analytical model and N-body simulations
- Extracting parity-violating gravitational waves from projected tidal force tensor in three dimensions
- A rising tide: Intrinsic alignments since the turn of the millennium
- B-modes from galaxy cluster alignments in future surveys
- Probabilistic Estimators of Lagrangian Shape Biases: Universal Relations and Physical Insights
- Modeling the Cosmological Lyman- Forest at the Field Level
- Parity Violation in Galaxy Shapes: Primordial Non-Gaussianity
- Evidence for Intrinsic Galaxy Alignments in Ellipticity Autocorrelations out to from SDSS Galaxies with DESI Imaging
- Three-point intrinsic alignments of galaxies and haloes in the FLAMINGO simulations