CHANG-ES XXV: H i imaging of nearby edge-on galaxies – Data Release 4

Author:

Zheng Yun1,Wang Jing1,Irwin Judith2ORCID,English Jayanne3,Ma Qingchuan4,Wang Ran1,Wang Ke1,Wang Q Daniel5ORCID,Krause Marita6,Randriamampandry Toky H1ORCID,Li Jiangtao78ORCID,Beck Rainer6

Affiliation:

1. Kavli Institute for Astronomy and Astrophysics, Peking University , Beijing 100871, China

2. Department of Physics, Engineering Physics and Astronomy, Queen’s University , Kingston ON K7L 3N6, Canada

3. Department of Physics and Astronomy, University of Manitoba , Winnipeg, Manitoba R3T 2N2, Canada

4. Peking University , Beijing 100871, China

5. Astronomy Department, University of Massachusetts , Amherst, MA 01003, USA

6. Max-Planck-Institut für Radioastronomie , Auf dem Hügel 69, D-53121 Bonn, Germany

7. Department of Astronomy, University of Michigan , 311 West Hall, 1085 S. University Avenue, Ann Arbor, MI 48109, USA

8. Purple Mountain Observatory, Chinese Academy of Sciences , 10 Yuanhua Road, Nanjing 210023, China

Abstract

ABSTRACT We present the ${\rm H}\, {\small I}$ distribution of galaxies from the Continuum Haloes in Nearby Galaxies – an EVLA Survey (CHANG-ES). Though the observational mode was not optimized for detecting ${\rm H}\, {\small I}$, we successfully produce ${\rm H}\, {\small I}$ cubes for 19 galaxies. The moment-0 maps from this work are available on CHANG-ES data release website (i.e. https://www.queensu.ca/changes). Our sample is dominated by star-forming, ${\rm H}\, {\small I}$-rich galaxies at distances from 6.27 to 34.1 Mpc. ${\rm H}\, {\small I}$ interferometric images on two of these galaxies (NGC 5792 and UGC 10288) are presented here for the first time, while 12 of our remaining sample galaxies now have better ${\rm H}\, {\small I}$ spatial resolutions and/or sensitivities of intensity maps than those in existing publications. We characterize the average scale heights of the ${\rm H}\, {\small I}$ distributions for a subset of most inclined galaxies (inclination > 80 deg), and compare them to the radio continuum intensity scale heights, which have been derived in a similar way. The two types of scale heights are well correlated, with similar dependence on disc radial extension and star formation rate surface density but different dependence on mass surface density. This result indicates that the vertical distribution of the two components may be governed by similar fundamental physics but with subtle differences.

Funder

National Science Foundation of China

China Manned Space

Peking University

Alfred P. Sloan Foundation

National Science Foundation

U.S. Department of Energy

National Aeronautics and Space Administration

Higher Education Funding Council for England

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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