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Cosmology with One Galaxy?

delete2022-04-20
delete25
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OA
AI
F
Francisco Villaescusa-Navarro *
J
Jupiter Ding
S
Shy Genel
S
Stephanie Tonnesen
D
David N. Spergel
R
Romain Teyssier
Y
Yin Li
C
Caroline Heneka
P
Pablo Lemos
D
Daniel Anglés‐Alcázar
D
Daisuke Nagai
M
Mark Vogelsberger
DOI:10.3847/1538-4357/ac5d3fdelete
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摘要

摘要

En 中文
Galaxies can be characterized by many internal properties such as stellar mass, gas metallicity, and star formation rate. We quantify the amount of cosmological and astrophysical information that the internal properties of individual galaxies and their host dark matter halos contain. We train neural networks using hundreds of thousands of galaxies from 2000 state-of-the-art hydrodynamic simulations with different cosmologies and astrophysical models of the CAMELS project to perform likelihood-free inference on the value of the cosmological and astrophysical parameters. We find that knowing the internal properties of a single galaxy allows our models to infer the value of omega(m), at fixed omega(b), with a similar to 10% precision, while no constraint can be placed on sigma (8). Our results hold for any type of galaxy, central or satellite, massive or dwarf, at all considered redshifts, z <= 3, and they incorporate uncertainties in astrophysics as modeled in CAMELS. However, our models are not robust to changes in subgrid physics due to the large intrinsic differences the two considered models imprint on galaxy properties. We find that the stellar mass, stellar metallicity, and maximum circular velocity are among the most important galaxy properties to determine the value of omega(m). We believe that our results can be explained by considering that changes in the value of omega(m), or potentially omega(b)/omega(m), affect the dark matter content of galaxies, which leaves a signature in galaxy properties distinct from the one induced by galactic processes. Our results suggest that the low-dimensional manifold hosting galaxy properties provides a tight direct link between cosmology and astrophysics.
Keyword:
ILLUSTRISTNG SIMULATIONS
NEUTRINO MASS
HYDRODYNAMICAL SIMULATIONS
INFORMATION-CONTENT
ASTROPHYSICS
CLUSTERS
MATTER

期刊

Astrophysical Journal 封面图
Astrophysical Journal
IF:
5.4
论文数:
8.3W
被引数:
32.0W

机构

C
Columbia University
学者数:
7.1W
论文数: 6.4W
被引数: 263
U
university of hamburg
学者数:
3.7W
论文数: 2.9W
被引数: 30
P
Princeton University
学者数:
2.1W
论文数: 2.3W
被引数: 5.1W
U
University College London
学者数:
7.9W
论文数: 6.2W
被引数: 15.7W
U
university of london
学者数:
21.5W
论文数: 19.7W
被引数: 305
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