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A&A 427, 415-429 (2004)
DOI: 10.1051/0004-6361:20040349
Stability of hydrodynamical relativistic planar jets
I. Linear evolution and saturation of Kelvin-Helmholtz modes
M. Perucho1, M. Hanasz2, J. M. Martí1 and H. Sol31 Departamento de Astronomía y Astrofísica, Universidad de Valencia, 46100 Burjassot, Spain
e-mail: [manuel.perucho;jose-maria.marti]@uv.es
2 Torun Centre for Astronomy, Nicholas Copernicus University, 97-148 Piwnice k. Torunia, Poland
e-mail: mhanasz@astri.uni.torun.pl
3 LUTH, Observatoire de Paris-Meudon, Pl. J. Jansen 5, Meudon 92195, France
e-mail: Helene.Sol@obspm.fr
(Received 27 February 2004 / Accepted 11 July 2004)
Abstract
The effects of relativistic dynamics and thermodynamics in
the development of Kelvin-Helmholtz instabilities in planar,
relativistic jets along the early phases (namely linear and saturation
phases) of evolution has been studied by a combination of linear
stability analysis and high-resolution numerical simulations for the
most unstable first reflection modes in the temporal approach. Three
different values of the jet Lorentz factor (5, 10 and 20) and a few
different values of specific internal energy of the jet matter (from
0.08 to
60.0 c2) have been considered. Figures
illustrating the evolution of the perturbations are also shown.
Key words: galaxies: jets -- hydrodynamics
SIMBAD Objects
© ESO 2004
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