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Relativistic Jet from Black Hole

An artist's impression of a relativistic jet propagating away from a black hole at close to the speed of light. Such jets are formed by the inner regions of the accretion flow: matter flowing inwards towards the black hole, via processes which are not yet fully understood. The accretion flow emits primarily in X-rays, the relativistic jet in the radio band: by combing observations in each band we can try and understand how such jets form and how much energy they carry away from the black hole.

Professor Rob Fender

Professor of Astrophysics

Research theme

  • Astronomy and astrophysics

Sub department

  • Astrophysics

Research groups

  • Hintze Centre for Astrophysical Surveys
  • MeerKAT
  • Pulsars, transients and relativistic astrophysics
  • Rubin-LSST
  • The Square Kilometre Array (SKA)
  • Gamma-ray astronomy
Rob.Fender@physics.ox.ac.uk
Telephone: 01865 (2)73435
Denys Wilkinson Building, room 712
  • About
  • Publications

Disk mass accretion rate and infrared flares in GRS 1915+105

(2000)

Authors:

T Belloni, S Migliari, RP Fender
More details from the publisher

The infrared counterpart of the Z source GX5-1

(2000)

Authors:

Peter G Jonker, Rob P Fender, Nigel C Hambly, Michiel van der Klis
More details from the publisher

Orbital dynamics of Cygnus X-3

(2000)

Authors:

MM Hanson, MD Still, RP Fender
More details from the publisher

Resolving the radio nebula around beta Lyrae

(2000)

Authors:

G Umana, PFL Maxted, C Trigilio, RP Fender, F Leone, SK Yerli
More details from the publisher
Details from ArXiV

Excess sub-millimetre emission from GRS 1915+105

(2000)

Authors:

RN Ogley, SJ Bell Burnell, RP Fender, GG Pooley, EB Waltman
More details from the publisher

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