ERGO-ML: Comparing IllustrisTNG and HSC galaxy images via contrastive learning

Fuente: arXiv
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Autores principales: Eisert, Lukas, Bottrell, Connor, Pillepich, Annalisa, Shimakawa, Rhythm, Rodriguez-Gomez, Vicente, Nelson, Dylan, Angeloudi, Eirini, Huertas-Company, Marc
Formato: Preprint
Publicado: 2023
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author Eisert, Lukas
Bottrell, Connor
Pillepich, Annalisa
Shimakawa, Rhythm
Rodriguez-Gomez, Vicente
Nelson, Dylan
Angeloudi, Eirini
Huertas-Company, Marc
author_facet Eisert, Lukas
Bottrell, Connor
Pillepich, Annalisa
Shimakawa, Rhythm
Rodriguez-Gomez, Vicente
Nelson, Dylan
Angeloudi, Eirini
Huertas-Company, Marc
contents Modern cosmological hydrodynamical galaxy simulations provide tens of thousands of reasonably realistic synthetic galaxies across cosmic time. However, quantitatively assessing the level of realism of simulated universes in comparison to the real one is difficult. In this paper of the ERGO-ML series (Extracting Reality from Galaxy Observables with Machine Learning), we utilize contrastive learning to directly compare a large sample of simulated and observed galaxies based on their stellar-light images. This eliminates the need to specify summary statistics and allows to exploit the whole information content of the observations. We produce survey-realistic galaxy mock datasets resembling real Hyper Suprime-Cam (HSC) observations using the cosmological simulations TNG50 and TNG100. Our focus is on galaxies with stellar masses between $10^9$ and $10^{12} M_\odot$ at $z=0.1-0.4$. This allows us to evaluate the realism of the simulated TNG galaxies in comparison to actual HSC observations. We apply the self-supervised contrastive learning method NNCLR to the images from both simulated and observed datasets (g, r, i - bands). This results in a 256-dimensional representation space, encoding all relevant observable galaxy properties. Firstly, this allows us to identify simulated galaxies that closely resemble real ones by seeking similar images in this multi-dimensional space. Even more powerful, we quantify the alignment between the representations of these two image sets, finding that the majority ($\gtrsim 70$ per cent) of the TNG galaxies align well with observed HSC images. However, a subset of simulated galaxies with larger sizes, steeper Sersic profiles, smaller Sersic ellipticities, and larger asymmetries appears unrealistic. We also demonstrate the utility of our derived image representations by inferring properties of real HSC galaxies using simulated TNG galaxies as the ground truth.
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id arxiv_https___arxiv_org_abs_2310_19904
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle ERGO-ML: Comparing IllustrisTNG and HSC galaxy images via contrastive learning
Eisert, Lukas
Bottrell, Connor
Pillepich, Annalisa
Shimakawa, Rhythm
Rodriguez-Gomez, Vicente
Nelson, Dylan
Angeloudi, Eirini
Huertas-Company, Marc
Astrophysics of Galaxies
Modern cosmological hydrodynamical galaxy simulations provide tens of thousands of reasonably realistic synthetic galaxies across cosmic time. However, quantitatively assessing the level of realism of simulated universes in comparison to the real one is difficult. In this paper of the ERGO-ML series (Extracting Reality from Galaxy Observables with Machine Learning), we utilize contrastive learning to directly compare a large sample of simulated and observed galaxies based on their stellar-light images. This eliminates the need to specify summary statistics and allows to exploit the whole information content of the observations. We produce survey-realistic galaxy mock datasets resembling real Hyper Suprime-Cam (HSC) observations using the cosmological simulations TNG50 and TNG100. Our focus is on galaxies with stellar masses between $10^9$ and $10^{12} M_\odot$ at $z=0.1-0.4$. This allows us to evaluate the realism of the simulated TNG galaxies in comparison to actual HSC observations. We apply the self-supervised contrastive learning method NNCLR to the images from both simulated and observed datasets (g, r, i - bands). This results in a 256-dimensional representation space, encoding all relevant observable galaxy properties. Firstly, this allows us to identify simulated galaxies that closely resemble real ones by seeking similar images in this multi-dimensional space. Even more powerful, we quantify the alignment between the representations of these two image sets, finding that the majority ($\gtrsim 70$ per cent) of the TNG galaxies align well with observed HSC images. However, a subset of simulated galaxies with larger sizes, steeper Sersic profiles, smaller Sersic ellipticities, and larger asymmetries appears unrealistic. We also demonstrate the utility of our derived image representations by inferring properties of real HSC galaxies using simulated TNG galaxies as the ground truth.
title ERGO-ML: Comparing IllustrisTNG and HSC galaxy images via contrastive learning
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2310.19904