Multifrequency observations of SGR J1935+2154

Author:

Bailes M12,Bassa C G3,Bernardi G456,Buchner S6ORCID,Burgay M7ORCID,Caleb M8,Cooper A J39ORCID,Desvignes G1011,Groot P J121314,Heywood I5615ORCID,Jankowski F8ORCID,Karuppusamy R10,Kramer M810ORCID,Malenta M8,Naldi G4,Pilia M7,Pupillo G4,Rajwade K M8ORCID,Spitler L10,Surnis M8,Stappers B W8ORCID,Addis A16,Bloemen S12,Bezuidenhout M C8,Bianchi G4,Champion D J10,Chen W10,Driessen L N8,Geyer M6ORCID,Gourdji K9ORCID,Hessels J W T39,Kondratiev V I317,Klein-Wolt M12,Körding E12,Le Poole R18,Liu K10,Lower M E1219ORCID,Lyne A G8,Magro A20,McBride V21,Mickaliger M B8,Morello V8ORCID,Parthasarathy A10ORCID,Paterson K22,Perera B B P23ORCID,Pieterse D L A12,Pleunis Z2425,Possenti A726,Rowlinson A39ORCID,Serylak M6ORCID,Setti G427,Tavani M2829,Wijers R A M J9,ter Veen S3,Venkatraman Krishnan V10,Vreeswijk P12,Woudt P A13ORCID

Affiliation:

1. Centre for Astrophysics and Supercomputing, Swinburne University of Technology, Mail 74 PO Box 218, Hawthorn, VIC 3122, Australia

2. ARC Centre of Excellence for Gravitational Wave Discovery (OzGrav), Australia

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

4. INAF-Istituto di Radio Astronomia, via Gobetti 101, I-40129 Bologna, Italy

5. Department of Physics and Electronics, Rhodes University, PO Box 94, Grahamstown 6140, South Africa

6. South African Radio Astronomy Observatory, Black River Park, 2 Fir Street, Observatory, Cape Town 7925, South Africa

7. INAF-Osservatorio Astronomico di Cagliari, via della Scienza 5, I-09047 Selargius (Cagliari), Italy

8. Jodrell Bank Centre for Astrophysics, Department of Physics and Astronomy, University of Manchester, Manchester M13 9PL, UK

9. Anton Pannekoek Institute for Astronomy, University of Amsterdam, Science Park 904, NL-1098 XH Amsterdam, the Netherlands

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

11. LESIA, Observatoire de Paris, Université PSL, CNRS, Sorbonne Université, Université de Paris, 5 place Jules Janssen, F-92195 Meudon, France

12. Department of Astrophysics/IMAPP, Radboud University, PO 9010, NL-6500 GL, Nijmegen, the Netherlands

13. Inter-University Institute for Data Intensive Astronomy and Department of Astronomy, University of Cape Town, Private Bag X3, Rondebosch 7701, South Africa

14. South African Astronomical Observatory, PO Box 9, 7935 Observatory, Cape Town, South Africa

15. Astrophysics, Department of Physics, University of Oxford, Keble Road, Oxford OX1 3RH, UK

16. INAF OAS Bologna, Via P. Gobetti 101, I-40129 Bologna, Italy

17. Astro Space Centre, Lebedev Physical Institute, Russian Academy of Sciences, Profsoyuznaya Str. 84/32, Moscow 117997, Russia

18. Leiden Observatory, Leiden University, P.O. Box 9513, NL-2300 RA Leiden, the Netherlands

19. CSIRO Astronomy and Space Science, Australia Telescope National Facility, PO Box 76, Epping, NSW 1710, Australia

20. Institute of Space Sciences and Astronomy (ISSA), University of Malta, Msida, MSD 2080, Malta

21. IAU-Office For Astronomy for Development, PO Box 9, 7935 Observatory, Cape Town, South Africa

22. Center for Interdisciplinary Exploration and Research in Astrophysics (CIERA), Northwestern University, 1800 Sherman Ave, Evanston, IL 60201, USA

23. Arecibo Observatory, Route 625 Bo. Esperanza, Arecibo, PR 00612, USA

24. Department of Physics, McGill University, 3600 University Street, Montréal, QC H3A 2T8, Canada

25. McGill Space Institute, McGill University, 3550 University Street, Montréal, QC H3A 2A7, Canada

26. Universitä degli Studi di Cagliari, Dip di Fisica, S.P. Monserrato-Sestu Km 0,700, I-09042 Monserrato (CA), Italy

27. Dipartimento di Fisica e Astronomia, Universitá di Bologna, Via Gobetti 93/2, I-40129 Bologna, Italy

28. INAF/IAPS, via del Fosso del Cavaliere 100, I-00133 Roma (RM), Italy

29. Universitä degli Studi di Roma ‘Tor Vergata’, via della Ricerca Scientifica 1, I-00133 Roma (RM), Italy

Abstract

ABSTRACT Magnetars are a promising candidate for the origin of fast radio bursts (FRBs). The detection of an extremely luminous radio burst from the Galactic magnetar SGR J1935+2154 on 2020 April 28 added credence to this hypothesis. We report on simultaneous and non-simultaneous observing campaigns using the Arecibo, Effelsberg, LOFAR, MeerKAT, MK2, and Northern Cross radio telescopes and the MeerLICHT optical telescope in the days and months after the April 28 event. We did not detect any significant single radio pulses down to fluence limits between 25 mJy ms and 18 Jy ms. Some observing epochs overlapped with times when X-ray bursts were detected. Radio images made on 4 d using the MeerKAT telescope revealed no point-like persistent or transient emission at the location of the magnetar. No transient or persistent optical emission was detected over seven days. Using the multicolour MeerLICHT images combined with relations between DM, NH, and reddening, we constrain the distance to SGR J1935+2154, to be between 1.5 and 6.5 kpc. The upper limit is consistent with some other distance indicators and suggests that the April 28 burst is closer to two orders of magnitude less energetic than the least energetic FRBs. The lack of single-pulse radio detections shows that the single pulses detected over a range of fluences are either rare, or highly clustered, or both. It may also indicate that the magnetar lies somewhere between being radio-quiet and radio-loud in terms of its ability to produce radio emission efficiently.

Funder

ERC

Australian Research Council

INAF

Ministero degli Affari Esteri e della Cooperazione Internazionale

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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