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Resonant Kelvin-Helmholtz modes in sheared relativistic flows

Repozytorium Uniwersytetu Mikołaja Kopernika

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dc.contributor.author Perucho, Manuel
dc.contributor.author Hanasz, Michał
dc.contributor.author Marti, Jose-Maria
dc.contributor.author Miralles, Juan-Antonio
dc.date.accessioned 2012-12-19T09:06:12Z
dc.date.available 2012-12-19T09:06:12Z
dc.date.issued 2007-05-03
dc.identifier.citation Phys.Rev.E75:056312,2007
dc.identifier.other doi:10.1103/PhysRevE.75.056312
dc.identifier.uri http://repozytorium.umk.pl/handle/item/245
dc.description.abstract Qualitatively new aspects of the (linear and non-linear) stability of sheared relativistic (slab) jets are analyzed. The linear problem has been solved for a wide range of jet models well inside the ultrarelativistic domain (flow Lorentz factors up to 20; specific internal energies $\approx 60c^2$). As a distinct feature of our work, we have combined the analytical linear approach with high-resolution relativistic hydrodynamical simulations, which has allowed us i) to identify, in the linear regime, resonant modes specific to the relativistic shear layer ii) to confirm the result of the linear analysis with numerical simulations and, iii) more interestingly, to follow the instability development through the non-linear regime. We find that very high-order reflection modes with dominant growth rates can modify the global, long-term stability of the relativistic flow. We discuss the dependence of these resonant modes on the jet flow Lorentz factor and specific internal energy, and on the shear layer thickness. The results could have potential applications in the field of extragalactic relativistic jets.
dc.language.iso eng
dc.relation.uri http://arxiv.org/abs/0705.0441
dc.rights info:eu-repo/semantics/openAccess
dc.subject Astrophysics
dc.title Resonant Kelvin-Helmholtz modes in sheared relativistic flows
dc.type info:eu-repo/semantics/article


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