English

Three-point intrinsic alignments of dark matter halos in the IllustrisTNG simulation

Cosmology and Nongalactic Astrophysics 2022-09-12 v2

Abstract

We use the IllustrisTNG suite of cosmological simulations to measure intrinsic alignment (IA) bispectra of dark matter subhalos between redshifts 0 and 1. We decompose the intrinsic shear field into E- and B-modes and find that the bispectra BδδEB_{\delta\delta\mathrm{E}} and BδEEB_{\delta\mathrm{EE}}, between the matter overdensity field, δ\delta, and the E-mode field, are detected with high significance. We also model the IA bispectra analytically using a method consistent with the two-point non-linear alignment model. We use this model and the simulation measurements to infer the intrinsic alignment amplitude AIAA_\mathrm{IA} and find that values of AIAA_\mathrm{IA} obtained from IA power spectra and bispectra agree well at scales up to kmax=2hMpc1k_\mathrm{max}= 2 \, h \mathrm{Mpc}^{-1}, for example at z=1z=1 AIA=2.13±A_\mathrm{IA} = 2.13 \pm 0.02 from the cross power spectrum between the matter overdensity and E-mode fields and AIA=2.11±A_\mathrm{IA} =2.11 \pm 0.03 from BδδEB_{\delta\delta \mathrm{E}}. This demonstrates that a single physically motivated model can jointly model two-point and three-point statistics of intrinsic alignments, thus enabling a cleaner separation between intrinsic alignments and cosmological weak lensing signals.

Keywords

Cite

@article{arxiv.2204.10342,
  title  = {Three-point intrinsic alignments of dark matter halos in the IllustrisTNG simulation},
  author = {Susan Pyne and Ananth Tenneti and Benjamin Joachimi},
  journal= {arXiv preprint arXiv:2204.10342},
  year   = {2022}
}

Comments

Consistent with version published in MNRAS