Using angular two-point correlations to self-calibrate the photometric redshift distributions of DECaLS DR9

Author:

Xu Haojie12,Zhang Pengjie123,Peng Hui12ORCID,Yu Yu12ORCID,Zhang Le456,Yao Ji7ORCID,Qin Jian12ORCID,Sun Zeyang12ORCID,He Min12,Yang Xiaohu123

Affiliation:

1. Department of Astronomy, Shanghai Jiao Tong University , Shanghai 200240, China

2. Key Laboratory for Particle Astrophysics and Cosmology (MOE)/Shanghai Key Laboratory for Particle Physics and Cosmology , China

3. Tsung-Dao Lee Institute, Shanghai Jiao Tong University , Shanghai 200240, China

4. School of Physics and Astronomy, Sun Yat-Sen University , Guangzhou 510297, China

5. CSST Science Center for the Guangdong-Hong Kong-Macau Greater Bay Area , Zhuhai 519082, China

6. Peng Cheng Laboratory , No.2, Xingke 1st Street, Shenzhen 518000, China

7. Shanghai Astronomical Observatory (SHAO) , Nandan Road 80, Shanghai 200030, China

Abstract

ABSTRACT Calibrating the redshift distributions of photometric galaxy samples is essential in weak lensing studies. The self-calibration method combines angular auto- and cross-correlations between galaxies in multiple photometric redshift (photo-z) bins to reconstruct the scattering rates matrix between redshift bins. In this paper, we test a recently proposed self-calibration algorithm using the DECaLS Data Release 9 and investigate to what extent the scattering rates are determined. We first mitigate the spurious angular correlations due to imaging systematics by a machine learning based method. We then improve the algorithm for χ2 minimization and error estimation. Finally, we solve for the scattering matrices, carry out a series of consistency tests, and find reasonable agreements: (1) finer photo-z bins return a high-resolution scattering matrix, and it is broadly consistent with the low-resolution matrix from wider bins; (2) the scattering matrix from the Northern Galactic Cap is almost identical to that from Southern Galactic Cap; (3) the scattering matrices are in reasonable agreement with those constructed from the power spectrum and the weighted spectroscopic subsample. We also evaluate the impact of cosmic magnification. Although it changes little the diagonal elements of the scattering matrix, it affects the off-diagonals significantly. The scattering matrix also shows some dependence on scale cut of input correlations, which may be related to a known numerical degeneracy between certain scattering pairs. This work demonstrates the feasibility of the self-calibration method in real data and provides a practical alternative to calibrate the redshift distributions of photometric samples.

Funder

National Key R&D Program of China

National Science Foundation of China

CAS

Shanghai Natural Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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