We present a set of high-resolution three-dimensional MHD simulations of steady light, supersonic jets, exploring the influence of jet Mach number and the ambient medium on jet propagation and energy deposition over long distances. The results are compared to simple self-similar scaling relations for the morphological evolution of jet-driven structures and to previously published two-dimensional simulations. For this study we simulated the propagation of light jets with internal Mach numbers 3 and 12 to lengths exceeding 100 initial jet radii in both uniform and stratified atmospheres. The propagating jets asymptotically deposit approximately half of their energy flux as thermal energy in the ambient atmosphere, almost independent of jet Ma...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
We present three-dimensional hydrodynamic simulations of jets as a model for protostellar outflows. ...
The structure of protostellar jets and outflows is determined by both the nature of the driving prot...
We present a set of high-resolution 3D MHD simulations exploring the evolution of light, supersonic ...
As an initial step in a program to examine the interactions of AGN jets with magnetized cluster medi...
We present fully three-dimensional hydrodynamical simulations of radiative cooling jets propagating ...
We present fully three-dimensional hydrodynamical and magnetohydrodynamical simulations of supersoni...
We present a large systematic study of hydrodynamic simulations of supersonic adiabatic jets in thre...
Publisher's version/PDFA set of three-dimensional magnetohydrodynamical simulations of supermagnetos...
We report on a series of 3D MHD simulations of AGN jet propagation in realistic models of magnetized...
Recent high-resolution (see, e.g., [13]) observations of astrophysical jets reveal complex structure...
V. Gaibler,; M. Krause; M. Camenzind; 'Very light magnetized jets on large scales - I. Evolution and...
We present a coherent picture for the formation of the observed diverse radio morphological structur...
Radio sources of low power are the most common in the universe. Their jets typically move at nonrela...
We are developing the capability for a multi-scale code to model the energy deposition rate and mome...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
We present three-dimensional hydrodynamic simulations of jets as a model for protostellar outflows. ...
The structure of protostellar jets and outflows is determined by both the nature of the driving prot...
We present a set of high-resolution 3D MHD simulations exploring the evolution of light, supersonic ...
As an initial step in a program to examine the interactions of AGN jets with magnetized cluster medi...
We present fully three-dimensional hydrodynamical simulations of radiative cooling jets propagating ...
We present fully three-dimensional hydrodynamical and magnetohydrodynamical simulations of supersoni...
We present a large systematic study of hydrodynamic simulations of supersonic adiabatic jets in thre...
Publisher's version/PDFA set of three-dimensional magnetohydrodynamical simulations of supermagnetos...
We report on a series of 3D MHD simulations of AGN jet propagation in realistic models of magnetized...
Recent high-resolution (see, e.g., [13]) observations of astrophysical jets reveal complex structure...
V. Gaibler,; M. Krause; M. Camenzind; 'Very light magnetized jets on large scales - I. Evolution and...
We present a coherent picture for the formation of the observed diverse radio morphological structur...
Radio sources of low power are the most common in the universe. Their jets typically move at nonrela...
We are developing the capability for a multi-scale code to model the energy deposition rate and mome...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
We present three-dimensional hydrodynamic simulations of jets as a model for protostellar outflows. ...
The structure of protostellar jets and outflows is determined by both the nature of the driving prot...