English

Cosmological inference from the eBOSS QSO full-shape analysis with optimal redshift weights

Cosmology and Nongalactic Astrophysics 2026-06-27 v1

Abstract

We present a full-shape power-spectrum analysis of the eBOSS DR16 quasar sample with optimal redshift weights. The DR16 QSO catalog contains 343,708 quasars over 0.8<z<2.20.8<z<2.2, a redshift interval broad enough to contain useful light-cone evolution but not naturally captured by a single effective-redshift measurement. We construct Karhunen--Lo\`eve weights for the parameters of interest and measure the resulting monopole and quadrupole with a cross-correlation estimator, which remains well defined for sign-changing weights. The theoretical spectra are convolved with the measured Fourier-space survey-window kernels for each Galactic cap and weighting scheme, and both the covariance matrix and the end-to-end validation are based on 1000 EZ light-cone mock catalogs. In Λ\LambdaCDM, the redshift-weighted and standard analyses give consistent constraints, as expected from the near-standard effective redshifts of the weights targeting hh, Ωm\Omega_{\rm m}, and AsA_s. In the Chevallier--Polarski--Linder (CPL) model, the redshift-weighted DR16 analysis reduces the marginalized uncertainties on H0H_0, σ8\sigma_8, and w0w_0 by 43.3%43.3\%, 19.7%19.7\%, and 20.5%20.5\%, respectively, and turns the standard one-sided constraint on waw_a into a bounded posterior, wa=0.981.3+1.0w_a=-0.98^{+1.0}_{-1.3}. The gain is therefore concentrated where the model contains genuine redshift evolution, demonstrating that optimal redshift weighting can recover tomographic information from a wide QSO light cone while keeping the full-shape data vector compact.

Cite

@article{arxiv.2606.28790,
  title  = {Cosmological inference from the eBOSS QSO full-shape analysis with optimal redshift weights},
  author = {Xiaoyong Mu and Zhuo-Heng Li and Wentao Luo and Yuting Wang and Gong-Bo Zhao},
  journal= {arXiv preprint arXiv:2606.28790},
  year   = {2026}
}

Comments

12 pages, 9 figures, comments welcome

R2 v1 2026-07-22T20:15:00.072Z