Discovery of a soft X-ray lag in the ultraluminous X-ray source NGC 1313 X-1

Author:

Kara E1ORCID,Pinto C23,Walton D J4ORCID,Alston W N4ORCID,Bachetti M5ORCID,Barret D6,Brightman M7,Canizares C R1,Earnshaw H P7ORCID,Fabian A C4ORCID,Fürst F8,Kosec P4,Middleton M J9,Roberts T P10,Soria R111213,Tao L7,Webb N A14

Affiliation:

1. MIT Kavli Institute for Astrophysics and Space Research, Cambridge, MA 02139, USA

2. ESTEC/ESA, Keplerlaan 1, NL-2201 AZ Noordwijk, the Netherlands

3. INAF – IASF Palermo, Via U. La Malfa 153, I-90146 Palermo, Italy

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

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

6. Université de Toulouse, CNRS, Institut de Recherche en Astrophysique et Planétologie, 9 Avenue du colonel Roche, BP 44346, F-31028 Toulouse Cedex 4, France

7. Cahill Center for Astronomy and Astrophysics, California Institute of Technology, 1216 East California Boulevard, Pasadena, CA 91125, USA

8. European Space Astronomy Centre (ESAC), Science Operations Department, E-28692 Villanueva de la Cañada, Madrid, Spain

9. Department of Physics and Astronomy, University of Southampton, Highfield, Southampton SO17 1BJ, UK

10. Centre for Extragalactic Astronomy, Department of Physics, Durham University, South Road, Durham DH1 3LE, UK

11. National Astronomical Observatories, Chinese Academy of Sciences, Beijing 100012, China

12. International Centre for Radio Astronomy Research, Curtin University, GPO Box U1987, Perth, WA 6845, Australia

13. Sydney Institute for Astronomy, School of Physics A28, The University of Sydney, Sydney, NSW 2006, Australia

14. CNRS, IRAP, 9 avenue du Colonel Roche, BP 44346, F-31028 Toulouse Cedex 4, France

Abstract

ABSTRACT Ultraluminous X-ray sources (ULXs) provide a unique opportunity to probe the geometry and energetics of super-Eddington accretion. The radiative processes involved in super-Eddington accretion are not well understood, and so studying correlated variability between different energy bands can provide insights into the causal connection between different emitting regions. We present a spectral-timing analysis of NGC 1313 X-1 from a recent XMM–Newton campaign. The spectra can be decomposed into two thermal-like components, the hotter of which may originate from the inner accretion disc, and the cooler from an optically thick outflow. We find correlated variability between hard (2–10 keV) and soft (0.3–2 keV) bands on kilosecond time-scales, and find a soft lag of ∼150 s. The covariance spectrum suggests that emission contributing to the lags is largely associated with the hotter of the two thermal-like components, likely originating from the inner accretion flow. This is only the third ULX to exhibit soft lags. The lags range over three orders of magnitude in amplitude, but all three are ∼5–20 per cent of the corresponding characteristic variability time-scales. If these soft lags can be understood in the context of a unified picture of ULXs, then lag time-scales may provide constraints on the density and extent of radiatively driven outflows.

Funder

National Aeronautics and Space Administration

Science and Technology Facilities Council

Smithsonian Astrophysical Observatory

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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