FORECASTOR -- II. Simulating Galaxy Surveys with the Cosmological Advanced Survey Telescope for Optical and UV Research

Fuente: arXiv
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Main Authors: Marshall, Madeline A., Amen, Laurie, Woods, Tyrone E., Cote, Patrick J., Yung, L. Y. Aaron, Amenouche, Melissa, Pass, Emily K., Balogh, Michael, Salim, Samir, Moutard, Thibaud
Format: Preprint
Published: 2024
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author Marshall, Madeline A.
Amen, Laurie
Woods, Tyrone E.
Cote, Patrick J.
Yung, L. Y. Aaron
Amenouche, Melissa
Pass, Emily K.
Balogh, Michael
Salim, Samir
Moutard, Thibaud
author_facet Marshall, Madeline A.
Amen, Laurie
Woods, Tyrone E.
Cote, Patrick J.
Yung, L. Y. Aaron
Amenouche, Melissa
Pass, Emily K.
Balogh, Michael
Salim, Samir
Moutard, Thibaud
contents The Cosmological Advanced Survey Telescope for Optical and UV Research (CASTOR) is a planned flagship space telescope, covering the blue-optical and UV part of the spectrum. Here we introduce the CASTOR image simulator, a Python GalSim package-based script capable of generating mock CASTOR images from an input catalogue. We generate example images from the CASTOR Wide, Deep, and Ultra-Deep surveys using simulated light-cones from the Santa Cruz Semi-Analytic Model. We make predictions for the performance of these surveys by comparing galaxies that are extracted from each image using Source Extractor to the input catalogue. We find that the Wide, Deep, and Ultra-Deep surveys will be 75% complete for point sources down to ~27, 29 and 30 mag, respectively, in the UV, u, and g filters, with the UV-split and u-split filters reaching a shallower depth. With a large area of ~2200 deg$^2$, the Wide survey will detect hundreds of millions of galaxies out to z~4, mostly with $M_\ast \gtrsim 10^9 M_\odot$. The Ultra-Deep survey will probe to z~5, detecting galaxies with $M_\ast \gtrsim 10^7 M_\odot$. These galaxy samples will enable precision measurements of the distribution of star formation in the cosmic web, connecting the growth of stellar mass to the assembly of dark matter halos over two thirds of the history of the Universe, and other core goals of CASTOR's legacy surveys. These image simulations and the tools developed to generate them will be a vital planning tool to estimate CASTOR's performance and iterate the telescope and survey designs prior to launch.
format Preprint
id arxiv_https___arxiv_org_abs_2402_17163
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle FORECASTOR -- II. Simulating Galaxy Surveys with the Cosmological Advanced Survey Telescope for Optical and UV Research
Marshall, Madeline A.
Amen, Laurie
Woods, Tyrone E.
Cote, Patrick J.
Yung, L. Y. Aaron
Amenouche, Melissa
Pass, Emily K.
Balogh, Michael
Salim, Samir
Moutard, Thibaud
Astrophysics of Galaxies
The Cosmological Advanced Survey Telescope for Optical and UV Research (CASTOR) is a planned flagship space telescope, covering the blue-optical and UV part of the spectrum. Here we introduce the CASTOR image simulator, a Python GalSim package-based script capable of generating mock CASTOR images from an input catalogue. We generate example images from the CASTOR Wide, Deep, and Ultra-Deep surveys using simulated light-cones from the Santa Cruz Semi-Analytic Model. We make predictions for the performance of these surveys by comparing galaxies that are extracted from each image using Source Extractor to the input catalogue. We find that the Wide, Deep, and Ultra-Deep surveys will be 75% complete for point sources down to ~27, 29 and 30 mag, respectively, in the UV, u, and g filters, with the UV-split and u-split filters reaching a shallower depth. With a large area of ~2200 deg$^2$, the Wide survey will detect hundreds of millions of galaxies out to z~4, mostly with $M_\ast \gtrsim 10^9 M_\odot$. The Ultra-Deep survey will probe to z~5, detecting galaxies with $M_\ast \gtrsim 10^7 M_\odot$. These galaxy samples will enable precision measurements of the distribution of star formation in the cosmic web, connecting the growth of stellar mass to the assembly of dark matter halos over two thirds of the history of the Universe, and other core goals of CASTOR's legacy surveys. These image simulations and the tools developed to generate them will be a vital planning tool to estimate CASTOR's performance and iterate the telescope and survey designs prior to launch.
title FORECASTOR -- II. Simulating Galaxy Surveys with the Cosmological Advanced Survey Telescope for Optical and UV Research
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2402.17163