论文标题

DESI概率增值的明亮星系调查(Propabgs)模拟挑战

The DESI PRObabilistic Value-Added Bright Galaxy Survey (PROVABGS) Mock Challenge

论文作者

Hahn, ChangHoon, Kwon, K. J., Tojeiro, Rita, Siudek, Malgorzata, Canning, Rebecca E. A., Mezcua, Mar, Tinker, Jeremy L., Brooks, David, Doel, Peter, Fanning, Kevin, Gaztañaga, Enrique, Kehoe, Robert, Landriau, Martin, Meisner, Aaron, Moustakas, John, Poppett, Claire, Tarle, Gregory, Weiner, Benjamin, Zou, Hu

论文摘要

概率增值的明亮星系调查(PROPABGS)目录将提供星系特性的测量,例如恒星质量($ m _*$),星形形成率($ {\ rm sfr} $),Stellar Metallicity($ Z _ {$ Z _ {\ rm mw} $),以及sterlal age age and stellar age and age a grim age( MW} $),对于Desi Bright Galaxy调查的1000万个星系。使用最新的贝叶斯光谱能量分布(SED)模型对DESI光谱和传统调查测量光度计,将推断出星系性能的完整后验分布。在这项工作中,我们介绍了SED模型,贝叶斯推理框架和Propabgs的方法论。此外,我们使用L-Galaxies半分析模型构建的逼真的合成DESI光谱和光度法应用Propabgs SED建模。我们将推断的星系性质与模拟的真实星系性质进行比较,使用分层贝叶斯框架来量化准确性和精度。总体而言,我们准确地推断出真实的$ m _*$,$ {\ rm sfr} $,$ z _ {\ rm mw} $和$ t _ {\ rm age,mw} $的$。但是,由SED模型引起的星系特性的先验对后代有重大影响。他们强加了$ {\ rm sfr} {>} 10^{ - 1} m_ \ odot/{\ rm yr} $下限$ {\ rm sfr} $上的下限$ t _ {\ rm age,mw} <8 \,{\ rm gyr} $上的上限时代。这项工作还表明,对光谱和光度法的联合分析可显着改善仅光度法对银河系特性的约束,这对于减轻先验的影响是必要的。通过在这项工作中介绍和验证的方法中,Propabgs将最大化从DESI观测值中提取的信息,并提供概率增值的星系目录,该目录将将当前的Galaxy研究扩展到新的制度并解锁裁员的概率分析。

The PRObabilistic Value-Added Bright Galaxy Survey (PROVABGS) catalog will provide measurements of galaxy properties, such as stellar mass ($M_*$), star formation rate (${\rm SFR}$), stellar metallicity ($Z_{\rm MW}$), and stellar age ($t_{\rm age, MW}$), for >10 million galaxies of the DESI Bright Galaxy Survey. Full posterior distributions of the galaxy properties will be inferred using state-of-the-art Bayesian spectral energy distribution (SED) modeling of DESI spectroscopy and Legacy Surveys photometry. In this work, we present the SED model, Bayesian inference framework, and methodology of PROVABGS. Furthermore, we apply the PROVABGS SED modeling on realistic synthetic DESI spectra and photometry, constructed using the L-GALAXIES semi-analytic model. We compare the inferred galaxy properties to the true galaxy properties of the simulation using a hierarchical Bayesian framework to quantify accuracy and precision. Overall, we accurately infer the true $M_*$, ${\rm SFR}$, $Z_{\rm MW}$, and $t_{\rm age, MW}$ of the simulated galaxies. However, the priors on galaxy properties induced by the SED model have a significant impact on the posteriors. They impose a ${\rm SFR}{>}10^{-1} M_\odot/{\rm yr}$ lower bound on ${\rm SFR}$, a ${\sim}0.3$ dex bias on $\log Z_{\rm MW}$ for galaxies with low spectral signal-to-noise, and $t_{\rm age, MW} < 8\,{\rm Gyr}$ upper bound on stellar age. This work also demonstrates that a joint analysis of spectra and photometry significantly improves the constraints on galaxy properties over photometry alone and is necessary to mitigate the impact of the priors. With the methodology presented and validated in this work, PROVABGS will maximize information extracted from DESI observations and provide a probabilistic value-added galaxy catalog that will extend current galaxy studies to new regimes and unlock cutting-edge probabilistic analyses.

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