A Magnetohydrodynamic Model of the M87 Jet I: Superluminal Knot Ejections from HST-1 as Trails of Quad Relativistic MHD Shocks
arXiv:1008.3512 · doi:10.1088/0004-637X/721/2/1783
Abstract
This is the first in a series of papers that introduces a new paradigm for understanding the jet in M87: a collimated relativistic flow in which strong magnetic fields play a dominant dynamical role. Here wefocus on the flow downstream of HST-1 - an essentially stationary flaring feature that ejects trails of superluminal components. We propose that these components are quad relativistic magnetohydrodynamic shock fronts (forward/reverse fast and slow modes) in a narrow jet with a helically twisted magnetic structure. And we demonstrate the properties of such shocks with simple one-dimensional numerical simulations. Quasi-periodic ejections of similar component trails may be responsible for the M87 jet substructures observed further downstream on 100 - 1,000 pc scales. This new paradigm requires the assimilation of some new concepts into the astrophysical jet community, particularly the behavior of slow/fast-mode waves/shocks and of current-driven helical kink instabilities. However, the prospects of these ideas applying to a large number of other jet systems may make this worth the effort.
7 pages, 4 figures, Accepted for Publication in ApJ
References in corpus (9)
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- The Inner Jet of the Radio Galaxy M87
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- Optical Polarization and Spectral Variability in the M87 Jet
- Optical Proper Motion Measurements of the M87 Jet: New Results from the Hubble Space Telescope
- Reading M87's DNA: A Double Helix revealing a large scale Helical Magnetic Field
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- Linear polarization in the nucleus of M87 at 7 mm and 1.3 cm
- Variations in emission from episodic plasmoid ejecta around black holes
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- Reversals in the Direction of Polarization Rotation in OJ 287
- A Magnetohydrodynamic Model of The M87 Jet. II. Self-consistent Quad-shock Jet Model for Optical Relativistic Motions and Particle Acceleration
- Probing the central black hole in M87 with gamma-rays
- M87: a cosmic laboratory for deciphering black hole accretion and jet formation
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- Multi-Wavelength Polarimetry and Spectral Study of M87 Jet During 2002-2008
- Retrograde versus prograde models of accreting black holes
- Reconfinement of highly magnetized jets: Implications for HST-1 in M87
- Resolving the rotation measure of the M87 jet on kilo-parsec scales
- First-generation Science Cases for Ground-based Terahertz Telescopes
- 180 Rotations in the Polarization Angle for Blazars
- Conditions for Relativistic Magnetic Reconnection under the Presence of Shear Flow and Guide Field
- Counter-rotation in relativistic magnetohydrodynamic jets
- Jet dynamics. Recollimation shocks and helical patterns
- Radio source evolution
- The polarisation behaviour of OJ 287 viewed through radio, millimetre and optical observations between 2015 and 2017