The MAGPI survey: Science goals, design, observing strategy, early results and theoretical framework

Author:

Foster C.ORCID,Mendel J. T.,Lagos C. D. P.ORCID,Wisnioski E.,Yuan T.,D’Eugenio F.,Barone T. M.,Harborne K. E.,Vaughan S. P.,Schulze F.,Remus R.-S.,Gupta A.,Collacchioni F.,Khim D. J.,Taylor P.,Bassett R.,Croom S. M.,McDermid R. M.,Poci A.,Battisti A. J.,Bland-Hawthorn J.,Bellstedt S.,Colless M.,Davies L. J. M.,Derkenne C.,Driver S.,Ferré-Mateu A.,Fisher D. B.,Gjergo E.,Johnston E. J.,Khalid A.,Kobayashi C.,Oh S.,Peng Y.,Robotham A. S. G.,Sharda P.,Sweet S. M.,Taylor E. N.,Tran K.-V. H.,Trayford J. W.,van de Sande J.,Yi S. K.,Zanisi L.

Abstract

Abstract We present an overview of the Middle Ages Galaxy Properties with Integral Field Spectroscopy (MAGPI) survey, a Large Program on the European Southern Observatory Very Large Telescope. MAGPI is designed to study the physical drivers of galaxy transformation at a lookback time of 3–4 Gyr, during which the dynamical, morphological, and chemical properties of galaxies are predicted to evolve significantly. The survey uses new medium-deep adaptive optics aided Multi-Unit Spectroscopic Explorer (MUSE) observations of fields selected from the Galaxy and Mass Assembly (GAMA) survey, providing a wealth of publicly available ancillary multi-wavelength data. With these data, MAGPI will map the kinematic and chemical properties of stars and ionised gas for a sample of 60 massive ( ${>}7 \times 10^{10} {\mathrm{M}}_\odot$ ) central galaxies at $0.25 < z <0.35$ in a representative range of environments (isolated, groups and clusters). The spatial resolution delivered by MUSE with Ground Layer Adaptive Optics ( $0.6-0.8$ arcsec FWHM) will facilitate a direct comparison with Integral Field Spectroscopy surveys of the nearby Universe, such as SAMI and MaNGA, and at higher redshifts using adaptive optics, for example, SINS. In addition to the primary (central) galaxy sample, MAGPI will deliver resolved and unresolved spectra for as many as 150 satellite galaxies at $0.25 < z <0.35$ , as well as hundreds of emission-line sources at $z < 6$ . This paper outlines the science goals, survey design, and observing strategy of MAGPI. We also present a first look at the MAGPI data, and the theoretical framework to which MAGPI data will be compared using the current generation of cosmological hydrodynamical simulations including EAGLE, Magneticum, HORIZON-AGN, and Illustris-TNG. Our results show that cosmological hydrodynamical simulations make discrepant predictions in the spatially resolved properties of galaxies at $z\approx 0.3$ . MAGPI observations will place new constraints and allow for tangible improvements in galaxy formation theory.

Publisher

Cambridge University Press (CUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 23 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The MAGPI Survey: the evolution and drivers of gas turbulence in intermediate-redshift galaxies;Monthly Notices of the Royal Astronomical Society;2024-08-26

2. The MAGPI survey: evidence against the bulge–halo conspiracy;Monthly Notices of the Royal Astronomical Society;2024-08-07

3. AGEL: Is the Conflict Real? Investigating Galaxy Evolution Models Using Strong Lensing at 0.3 < z < 0.9;The Astrophysical Journal;2024-07-01

4. The MAGPI Survey: massive slow rotator population in place by z ∼ 0.3;Monthly Notices of the Royal Astronomical Society;2024-06-06

5. The MAGPI survey: using kinematic asymmetries in stars and gas to dissect drivers of galaxy dynamical evolution;Monthly Notices of the Royal Astronomical Society;2024-06-03

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