Connecting radio emission to AGN wind properties with broad absorption line quasars

Author:

Petley J W1ORCID,Morabito L K12ORCID,Alexander D M1,Rankine A L3ORCID,Fawcett V A1ORCID,Rosario D J4,Matthews J H5ORCID,Shimwell T M67,Drabent A8

Affiliation:

1. Centre for Extragalactic Astronomy, Department of Physics, Durham University , Durham, DH1 3LE, UK

2. Institute for Computational Cosmology, Department of Physics, Durham University , Durham, DH1 3LE, UK

3. Institute for Astronomy, University of Edinburgh, Royal Observatory , Edinburgh, EH9 3HJ, UK

4. School of Mathematics, Statistics and Physics, Newcastle University , NE1 7RU, UK

5. Institute of Astronomy, University of Cambridge , Madingley Road, Cambridge, CB3 0HA, UK

6. ASTRON, Netherlands Institute for Radio Astronomy , Oude Hoogeveensedijk 4, NL-7991 PD, Dwingeloo, The Netherlands

7. Leiden Observatory, Leiden University , PO Box 9513, NL-2300 RA Leiden, The Netherlands

8. Thuringer Landessternwarte , Sternwarte 5, D-07778 Tautenburg, Germany

Abstract

ABSTRACT Broad absorption line quasars (BALQSOs) show strong signatures of powerful outflows, with the potential to alter the cosmic history of their host galaxies. These signatures are only seen in ∼10 per cent of optically selected quasars, although the fraction significantly increases in IR and radio selected samples. A proven physical explanation for this observed fraction has yet to be found, along with a determination of why this fraction increases at radio wavelengths. We present the largest sample of radio matched BALQSOs using the LOFAR Two-metre Sky Survey Data Release 2 and employ it to investigate radio properties of BALQSOs. Within the DR2 footprint, there are 3537 BALQSOs from Sloan Digital Sky Survey DR12 with continuum signal-to-noise ≥5. We find radio-detections for 1108 BALQSOs, with an important subpopulation of 120 LoBALs, an unprecedented sample size for radio matched BALQSOs given the sky coverage to date. BALQSOs are a radio-quiet population that show an increase of ×1.50 radio-detection fraction compared to non-BALQSOs. LoBALs show an increase of ×2.22 that of non-BALQSO quasars. We show that this detection fraction correlates with wind-strength, reddening, and C iv emission properties of BALQSOs and that these features may be connected, although no single property can fully explain the enhanced radio detection fraction. We create composite spectra for subclasses of BALQSOs based on wind strength and colour, finding differences in the absorption profiles of radio-detected and radio-undetected sources, particularly for LoBALs. Overall, we favour a wind-ISM interaction explanation for the increased radio-detection fraction of BALQSOs.

Funder

European Research Council

NOVA

NWO

CNRS

Science and Technology Facilities Council

JSC

NIC

BMBF

Alfred P. Sloan Foundation

U.S. Department of Energy

Office of Science

University of Utah

Carnegie Mellon University

Johns Hopkins University

University of Tokyo

Lawrence Berkeley National Laboratory

Leibniz-Institut für Astrophysik Potsdam

New Mexico State University

New York University

University of Notre Dame

Ohio State University

Pennsylvania State University

Universidad Nacional Autónoma de México

University of Arizona

University of Colorado Boulder

Oxford University

University of Portsmouth

University of Virginia

University of Washington

Vanderbilt University

Yale University

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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