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Forward Modeling of Spectroscopic Galaxy Surveys: Application to SDSS

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arxiv 1803.06343 v2 pith:NBBLHZPS submitted 2018-03-14 astro-ph.GA astro-ph.CO

Forward Modeling of Spectroscopic Galaxy Surveys: Application to SDSS

classification astro-ph.GA astro-ph.CO
keywords galaxydataspectraspectroscopicsurveysforwardintrinsicmodeling
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Galaxy spectra are essential to probe the spatial distribution of galaxies in our Universe. To better interpret current and future spectroscopic galaxy redshift surveys, it is important to be able to simulate these data sets. We describe Uspec, a forward modeling tool to generate galaxy spectra taking into account some intrinsic galaxy properties as well as instrumental responses of a given telescope. The model for the intrinsic properties of the galaxy population, i.e., the luminosity functions, and size and spectral coefficients distribu- tions, was developed in an earlier work for broad-band imaging surveys [1], and we now aim to test the model further using spectroscopic data. We apply Uspec to the SDSS/CMASS sample of Luminous Red Galaxies (LRGs). We construct selection cuts that match those used to build this LRG sample, which we then apply to data and simulations in the same way. The resulting real and simulated average spectra show a good statistical agreement overall, with residual differences likely coming from a bluer galaxy population of the simulated sam- ple. We also do not explore the impact of non-solar element ratios in our simulations. For a quantitative comparison, we perform Principal Component Analysis (PCA) of the sets of spectra. By comparing the PCs constructed from simulations and data, we find good agree- ment for all components. The distributions of the eigencoefficients also show an appreciable overlap. We are therefore able to properly simulate the LRG sample taking into account the SDSS/BOSS instrumental responses. The differences between the two samples can be ascribed to the intrinsic properties of the simulated galaxy population, which can be reduced by further improvements of our modelling method in the future. We discuss how these results can be useful for the forward modeling of upcoming large spectroscopic surveys.

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Forward citations

Cited by 3 Pith papers

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  1. pop-cosmos: Disentangling galaxy properties from observables using data-driven approaches

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    A beta-VAE analysis of pop-cosmos models finds that five latent dimensions capture the rest-frame optical SED, corresponding to stellar mass, recent star formation, dust, and two gas ionization states.

  2. pop-cosmos: Disentangling galaxy properties from observables using data-driven approaches

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    Rest-frame optical galaxy SEDs from a 16-parameter SPS model are captured by five disentangled VAE latents (mass, young stars, dust, soft/hard ionization); metallicity and age are not independent drivers.

  3. pop-cosmos: Galaxy size evolution across structural and star-formation classifications in COSMOS-Web

    astro-ph.GA 2026-06 unverdicted novelty 5.0

    Galaxy size-mass relations exhibit double power-law breaks at different pivot masses for quiescent versus bulge-dominated samples, coinciding with AGN activity scales.