Emulating power spectra for pre- and post-reconstructed galaxy samples
Abstract
The small-scale linear information in galaxy samples typically lost during non-linear growth can be restored to a certain level by the density field reconstruction, which has been demonstrated for improving the precision of the baryon acoustic oscillations (BAO) measurements. As proposed in the literature, a joint analysis of the power spectrum before and after the reconstruction enables an efficient extraction of information carried by high-order statistics. However, the statistics of the post-reconstruction density field are difficult to model. In this work, we circumvent this issue by developing an accurate emulator for the pre-reconstructed, post-reconstructed, and cross power spectra (, , ) up to based on the \textsc{Dark Quest} N-body simulations. The accuracy of the emulator is at percent level, namely, the error of the emulated monopole and quadrupole of the power spectra is less than and of the ground truth, respectively. A fit to an example power spectra using the emulator shows that the constraints on cosmological parameters get largely improved using ++ with , compared to that derived from alone, namely, the constraints on (, , ) are tightened by , and the uncertainties of the derived BAO and RSD parameters (, , ) shrink by , respectively. This highlights the complementarity among , and , which demonstrates the efficiency and practicability of a joint , and analysis for cosmological implications.
Cite
@article{arxiv.2311.05848,
title = {Emulating power spectra for pre- and post-reconstructed galaxy samples},
author = {Yuting Wang and Ruiyang Zhao and Zhongxu Zhai and Kazuya Koyama and Will J. Percival and Hong Guo and Yin Li and Gong-Bo Zhao and Takahiro Nishimichi and Héctor Gil-Marín and Yonghao Feng and Hanyu Zhang and Yi Wu},
journal= {arXiv preprint arXiv:2311.05848},
year = {2024}
}
Comments
19 pages, 11 figures, 2 tables; accepted for publication in ApJ