X-ray detection of the most extreme star-forming galaxies at the cosmic noon via strong lensing

Author:

Wang Q Daniel1ORCID,Diaz Carlos Garcia1,Kamieneski Patrick S2ORCID,Harrington Kevin C3,Yun Min S1ORCID,Foo Nicholas2,Frye Brenda L4,Jimenez-Andrade Eric F5ORCID,Liu Daizhong6,Lowenthal James D7,Pampliega Belén Alcalde3ORCID,Pascale Massimo8ORCID,Vishwas Amit9,Gurwell Mark A10

Affiliation:

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

2. School of Earth and Space Exploration, Arizona State University , Tempe, AZ 85287-6004 , USA

3. European Southern Observatory , Alonso de Córdova 3107, Vitacura, Casilla 19001, Santiago de Chile , Chile

4. Department of Astronomy/Steward Observatory , 933 North Cherry Avenue, University of Arizona, Tucson, AZ 85721 , USA

5. Instituto de Radioastronomía y Astrofísica, Universidad Nacional Autónoma de México , Antigua Carretera a Pátzcuaro # 8701, Ex-Hda. San José de la Huerta, Morelia, Michoacán, México C.P. 58089 , México

6. Max-Planck-Institut für extraterrestrische Physik , Giessenbachstrasse 1 Garching, Bayern, D-85748 , Germany

7. Smith College , Northampton, MA 01063 , USA

8. Department of Astronomy, University of California , Berkeley, CA 94720 , USA

9. Department of Astronomy, Cornell University , Space Sciences Building, Ithaca, NY 14853 , USA

10. Center for Astrophysics | Harvard & Smithsonian , 60 Garden Street, Cambridge, MA 02138 , USA

Abstract

ABSTRACT Hyperluminous infrared galaxies (HyLIRGs) are the most extreme star-forming systems observed in the early Universe, and their properties still elude comprehensive understanding. We have undertaken a large XMM–Newton observing programme to probe the total accreting black hole population in three HyLIRGs at z = 2.12, 3.25, and 3.55, gravitationally lensed by foreground galaxies. Selected from the Planck All-Sky Survey to Analyse Gravitationally lensed Extreme Starbursts (PASSAGES), these HyLIRGs have apparent infrared luminosities >1014 L⊙. Our observations revealed X-ray emission in each of them. PJ1336+49 appears to be dominated by high-mass X-ray binaries (HMXBs). Remarkably, the luminosity of this non-AGN X-ray emission exceeds by a factor of about 3 the value obtained by calibration with local galaxies with much lower star formation rates. This enhanced X-ray emission most likely highlights the efficacy of dynamical HMXB production within compact clusters, which is an important mode of star formation in HyLIRGs. The remaining two (PJ0116−24 and PJ1053+60) morphologically and spectrally exhibit a compact X-ray component in addition to the extended non-AGN X-ray emission, indicating the presence of Active Galactic Nuclei (AGNs). The AGN appears to be centrally located in the reconstructed source plane images of PJ0116−24, which manifests its star-forming activity predominantly within an extended galactic disc. In contrast, the AGN in the field of PJ1053+60 is projected 60 kpc away from the extreme star-forming galaxy and could be ejected from it. These results underline the synergistic potential of deep X-ray observations with strong lensing for the study of high-energy astrophysical phenomena in HyLIRGs.

Funder

NASA

Smithsonian Institution

Academia Sinica

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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