English

6x2pt: Forecasting gains from joint weak lensing and galaxy clustering analyses with spectroscopic-photometric galaxy cross-correlations

Cosmology and Nongalactic Astrophysics 2025-07-02 v1

Abstract

We explore the enhanced self-calibration of photometric galaxy redshift distributions, n(z)n(z), through the combination of up to six two-point functions. Our 3×2pt\rm 3\times2pt configuration is comprised of photometric shear, spectroscopic galaxy clustering, and spectroscopic-photometric galaxy-galaxy lensing (GGL). We further include spectroscopic-photometric cross-clustering; photometric GGL; and photometric auto-clustering, using the photometric shear sample as density tracer. We perform simulated likelihood forecasts of the cosmological and nuisance parameter constraints for Stage-III- and Stage-IV-like surveys. For the Stage-III-like case, we employ realistic but perturbed redshift distributions, and distinguish between "coherent" shifting in one direction, versus more internal scattering and full-shape errors. For perfectly known n(z)n(z), a 6×2pt\rm 6\times2pt analysis gains 40%\sim40\% in Figure of Merit (FoM) in the S8σ8Ωm/0.3S_8\equiv\sigma_8\sqrt{\Omega_{\rm m}/0.3} and Ωm\Omega_{\rm m} plane relative to the 3×2pt\rm 3\times2pt analysis. If untreated, coherent and incoherent redshift errors lead to inaccurate inferences of S8S_8 and Ωm\Omega_{\rm m}, respectively. Employing bin-wise scalar shifts δzi\delta{z}_i in the tomographic mean redshifts reduces cosmological parameter biases, with a 6x2pt\rm 6x2pt analysis constraining the shift parameters with 242-4 times the precision of a photometric 3ph×2pt\rm 3^{ph}\times2pt analysis. For the Stage-IV-like survey, a 6×2pt\rm 6\times2pt analysis doubles the FoM(σ8Ωm\sigma_8{-}\Omega_{\rm m}) compared to any 3×2pt\rm 3\times2pt or 3ph×2pt\rm 3^{ph}\times2pt analysis, and is only 8%8\% less constraining than if the n(z)n(z) were perfectly known. A Gaussian mixture model for the n(z)n(z) reduces mean-redshift errors and preserves the n(z)n(z) shape. It also yields the most accurate and precise cosmological constraints for any N×2ptN\rm\times2pt configuration given n(z)n(z) biases.

Keywords

Cite

@article{arxiv.2409.17377,
  title  = {6x2pt: Forecasting gains from joint weak lensing and galaxy clustering analyses with spectroscopic-photometric galaxy cross-correlations},
  author = {Harry Johnston and Nora Elisa Chisari and Shahab Joudaki and Robert Reischke and Benjamin Stölzner and Arthur Loureiro and Constance Mahony and Sandra Unruh and Angus H. Wright and Marika Asgari and Maciej Bilicki and Pierre Burger and Andrej Dvornik and Christos Georgiou and Benjamin Giblin and Catherine Heymans and Hendrik Hildebrandt and Benjamin Joachimi and Konrad Kuijken and Shun-Sheng Li and Laila Linke and Lucas Porth and HuanYuan Shan and Tilman Tröster and Jan Luca van den Busch and Maximilian von Wietersheim-Kramsta and Ziang Yan and Yun-Hao Zhang},
  journal= {arXiv preprint arXiv:2409.17377},
  year   = {2025}
}

Comments

38 pages, 20 figures, to be submitted to A&A