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2016MNRAS.462..468C - Mon. Not. R. Astron. Soc., 462, 468-473 (2016/October-2)

Understanding the light curves of the HST-1 knot in M87 with internal relativistic shock waves along its jet.

CORONADO Y., LOPEZ-CORONA O. and MENDOZA S.

Abstract (from CDS):

Knots or blobs observed in astrophysical jets are commonly interpreted as shock waves moving along them. Long-time observations of the HST-1 knot inside the jet of the galaxy M87 have produced detailed multiwavelength light curves. In this paper, we model these light curves using the semi-analytical approach developed by Mendoza et al. This model was developed to account for the light curves produced by working surfaces (blobs) moving along relativistic jets. These working surfaces are generated by periodic oscillations of the injected flow velocity and mass ejection rates at the base of the jet. Using genetic algorithms to fit the parameters of the model, we are able to explain the outbursts observed in the light curves of the HST-1 knot with an accuracy greater than a 2σ statistical confidence level.

Abstract Copyright: © 2016 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): hydrodynamics - relativistic processes - shock waves - galaxies: jets - galaxies: jets

Simbad objects: 5

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