The Cosmic Ultraviolet Baryon Survey (CUBS) V: on the thermodynamic properties of the cool circumgalactic medium at z ≲ 1

Author:

Qu Zhijie1ORCID,Chen Hsiao-Wen1ORCID,Rudie Gwen C2ORCID,Zahedy Fakhri S2ORCID,Johnson Sean D3ORCID,Boettcher Erin456ORCID,Cantalupo Sebastiano7ORCID,Chen Mandy C1,Cooksey Kathy L8ORCID,DePalma David9,Faucher-Giguère Claude-André10ORCID,Rauch Michael2,Schaye Joop11ORCID,Simcoe Robert A9

Affiliation:

1. Department of Astronomy & Astrophysics, The University of Chicago , 5640 S. Ellis Ave., Chicago, IL 60637, USA

2. The Observatories of the Carnegie Institution for Science , 813 Santa Barbara Street, Pasadena, CA 91101, USA

3. Department of Astronomy, University of Michigan , Ann Arbor, MI 48109, USA

4. Department of Astronomy, University of Maryland , College Park, MD 20742, USA

5. X-ray Astrophysics Laboratory , NASA/GSFC, Greenbelt, MD 20771, USA

6. Center for Research and Exploration in Space Science and Technology , NASA/GSFC, Greenbelt, MD 20771, USA

7. Department of Physics, University of Milan Bicocca , Piazza della Scienza 3, I-20126 Milano, Italy

8. Department of Physics and Astronomy, University of Hawai’i at Hilo , Hilo, HI 96720, USA

9. MIT-Kavli Institute for Astrophysics and Space Research , 77 Massachusetts Ave., Cambridge, MA 02139, USA

10. Department of Physics & Astronomy, Center for Interdisciplinary Exploration and Research in Astrophysics (CIERA), Northwestern University , 1800 Sherman Avenue, Evanston, IL 60201, USA

11. Leiden Observatory, Leiden University , PO Box 9513, NL-2300 RA Leiden, the Netherlands

Abstract

ABSTRACT This paper presents a systematic study of the photoionization and thermodynamic properties of the cool circumgalactic medium (CGM) as traced by rest-frame ultraviolet absorption lines around 26 galaxies at redshift z ≲ 1. The study utilizes both high-quality far-ultraviolet and optical spectra of background QSOs and deep galaxy redshift surveys to characterize the gas density, temperature, and pressure of individual absorbing components and to resolve their internal non-thermal motions. The derived gas density spans more than three decades, from $\log (n_{\rm H}/{{\rm cm^{-3}}}) \approx -4$ to −1, while the temperature of the gas is confined in a narrow range of log (T/K) ≈ 4.3 ± 0.3. In addition, a weak anticorrelation between gas density and temperature is observed, consistent with the expectation of the gas being in photoionization equilibrium. Furthermore, decomposing the observed line widths into thermal and non-thermal contributions reveals that more than 30 per cent of the components at z ≲ 1 exhibit line widths driven by non-thermal motions, in comparison to <20 per cent found at z ≈ 2–3. Attributing the observed non-thermal line widths to intra-clump turbulence, we find that massive quenched galaxies on average exhibit higher non-thermal broadening/turbulent energy in their CGM compared to star-forming galaxies at z ≲ 1. Finally, strong absorption features from multiple ions covering a wide range of ionization energy (e.g. from Mg ii to O iv) can be present simultaneously in a single absorption system with kinematically aligned component structure, but the inferred pressure in different phases may differ by a factor of ≈10.

Funder

NSF

NASA

European Research Council

STScI

Research Corporation for Science Advancement

ESO

ESA

ADS

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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