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Black Hole

Lensing of space time around a black hole. At Oxford we study black holes observationally and theoretically on all size and time scales - it is some of our core work.

Credit: ALAIN RIAZUELO, IAP/UPMC/CNRS. CLICK HERE TO VIEW MORE IMAGES.

Sara Motta

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Sub department

  • Astrophysics
sara.motta@physics.ox.ac.uk
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  • Publications

Swift observations of V404 Cyg during the 2015 outburst: X-ray outflows from super-Eddington accretion

Monthly Notices of the Royal Astronomical Society Oxford University Press 471:2 (2017) 1797-1818

Authors:

Sara E Motta, JJE Kajava, C Sánchez-Fernández, AP Beardmore, A Sanna, KL Page, Robert Fender, D Altamirano, Philip A Charles, M Giustini, C Knigge, E Kuulkers, S Oates, JP Osborne

Abstract:

The black hole (BH) binary V404 Cyg entered the outburst phase in 2015 June after 26 yr of X-ray quiescence, and with its behaviour broke the outburst evolution pattern typical of most BH binaries. We observed the entire outburst with the Swift satellite and performed timeresolved spectroscopy of its most active phase, obtaining over a thousand spectra with exposures from tens to hundreds of seconds. All the spectra can be fitted with an absorbed power-law model, which most of the time required the presence of a partial covering. A blueshifted iron-Kα line appears in 10 per cent of the spectra together with the signature of high column densities, and about 20 per cent of the spectra seem to show signatures of reflection. None of the spectra showed the unambiguous presence of soft disc-blackbody emission, while the observed bolometric flux exceeded the Eddington value in 3 per cent of the spectra. Our results can be explained assuming that the inner part of the accretion flow is inflated into a slim disc that both hides the innermost (and brightest) regions of the flow, and produces a cold, clumpy, high-density outflow that introduces the high absorption and fast spectral variability observed. We argue that the BH in V404 Cyg might have been accreting erratically or even continuously at Eddington/super-Eddington rates - thus sustaining a surrounding slim disc - while being partly or completely obscured by the inflated disc and its outflow. Hence, the largest flares produced by the source might not be accretion-driven events, but instead the effects of the unveiling of the extremely bright source hidden within the system.
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Links between quasi-periodic oscillations and accretion states in neutron star low-mass X-ray binaries

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 468:2 (2017) 2311-2324

Authors:

SE Motta, A Rouco-Escorial, E Kuulkers, T Muñoz-Darias, A Sanna
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The black hole binary V404 Cygni: a highly accreting obscured AGN analogue

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 468:1 (2017) 981-993

Authors:

SE Motta, JJE Kajava, C Sánchez-Fernández, M Giustini, E Kuulkers
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Hard X-ray variability of V404 Cygni during the 2015 outburst⋆

Astronomy & Astrophysics EDP Sciences 602 (2017) a40

Authors:

C Sánchez-Fernández, JJE Kajava, SE Motta, E Kuulkers
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Inclination dependence of QPO phase lags in black hole X-ray binaries

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 464:3 (2017) 2643-2659

Authors:

J van den Eijnden, A Ingram, P Uttley, SE Motta, TM Belloni, DW Gardenier
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