中文

Euclid:利用光谱交叉相关校准测光红移

宇宙学与河外天体物理 2023-02-27 v2

摘要

来自 Euclid 成像巡天关键探针的宇宙学约束严重依赖于对层析红移箱中真实红移分布 n(z)n(z) 的精确确定。我们研究了能否通过交叉相关,利用类似于重子振荡光谱巡天(BOSS)、暗能量光谱仪器(DESI)和 Euclid 的 NISP 光谱巡天的光谱样本,将十个 Euclid 层析红移箱的平均红移 <z><z> 校准至 Euclid 目标不确定度 σ(<z>)<0.002(1+z)\sigma(<z>)<0.002\,(1+z)。我们从 Flagship 模拟中构建模拟的 Euclid 与光谱星系样本,并使用一种在当前星系巡天数据上表现良好的算法测量直至红移 z<1.8z<1.8 的小尺度成团红移。随后将成团测量结果拟合到两个 n(z)n(z) 模型:一个是具有自由均值真实 n(z)n(z);另一个是被修正为限制取非负值的高斯过程。我们表明,在每个层析红移箱中 <z><z> 的测量精度达到约 0.01 或更好。通过在完整 Flagship 区域子集上测量成团红移,我们构建了标度关系,使得该方法性能可外推至模拟中当前可用的更大天区。对于预期 Euclid、BOSS 和 DESI 重叠的全约 6000 deg2^{2} 区域,在所考虑的两种 n(z)n(z) 模型下,成团红移可达到的不确定度均至少比 Euclid 要求优三倍,尽管系统偏差限制了精度。若能确定并消除系统偏差来源,或利用足够真实的模拟将其校准掉,成团红移是 Euclid 红移校准的一种极为有效的方法。我们概述了未来的可能工作,特别是利用类星体参考样本向更高红移的扩展。

关键词

引用

@article{arxiv.2208.10503,
  title  = {Euclid: Calibrating photometric redshifts with spectroscopic cross-correlations},
  author = {K. Naidoo and H. Johnston and B. Joachimi and J. L. van den Busch and H. Hildebrandt and O. Ilbert and O. Lahav and N. Aghanim and B. Altieri and A. Amara and M. Baldi and R. Bender and C. Bodendorf and E. Branchini and M. Brescia and J. Brinchmann and S. Camera and V. Capobianco and C. Carbone and J. Carretero and F. J. Castander and M. Castellano and S. Cavuoti and A. Cimatti and R. Cledassou and G. Congedo and C. J. Conselice and L. Conversi and Y. Copin and L. Corcione and F. Courbin and M. Cropper and A. Da Silva and H. Degaudenzi and J. Dinis and F. Dubath and X. Dupac and S. Dusini and S. Farrens and S. Ferriol and P. Fosalba and M. Frailis and E. Franceschi and P. Franzetti and M. Fumana and S. Galeotta and B. Garilli and W. Gillard and B. Gillis and C. Giocoli and A. Grazian and F. Grupp and S. V. H. Haugan and W. Holmes and F. Hormuth and A. Hornstrup and K. Jahnke and M. Kümmel and A. Kiessling and M. Kilbinger and T. Kitching and R. Kohley and H. Kurki-Suonio and S. Ligori and P. B. Lilje and I. Lloro and E. Maiorano and O. Mansutti and O. Marggraf and K. Markovic and F. Marulli and R. Massey and S. Maurogordato and M. Meneghetti and E. Merlin and G. Meylan and M. Moresco and L. Moscardini and E. Munari and R. Nakajima and S. M. Niemi and C. Padilla and S. Paltani and F. Pasian and K. Pedersen and W. J. Percival and V. Pettorino and S. Pires and G. Polenta and M. Poncet and L. Popa and L. Pozzetti and F. Raison and R. Rebolo and A. Renzi and J. Rhodes and G. Riccio and E. Romelli and C. Rosset and E. Rossetti and R. Saglia and D. Sapone and B. Sartoris and P. Schneider and A. Secroun and G. Seidel and C. Sirignano and G. Sirri and J. -L. Starck and C. Surace and P. Tallada-Crespí and A. N. Taylor and I. Tereno and R. Toledo-Moreo and F. Torradeflot and I. Tutusaus and E. A. Valentijn and L. Valenziano and T. Vassallo and Y. Wang and J. Weller and M. Wetzstein and A. Zacchei and G. Zamorani and J. Zoubian and S. Andreon and D. Maino and V. Scottez and A. H. Wright},
  journal= {arXiv preprint arXiv:2208.10503},
  year   = {2023}
}

备注

14 pages, 8 figures, accepted for publication in A&A