We present new 3D numerical simulations for Kepler´s supernova remnant. In this work we revisit the possibility that the asymmetric shape of the remnant in X-rays is the product of a type Ia supernova explosion which occurs inside the wind bubble previously created by an AGB companion star. Due to the large peculiar velocity of the system, the interaction of the strong AGB wind with the interstellar medium results in a bow shock structure. In this new model we propose that the AGB wind is anisotropic, with properties such as mass-loss rate and density having a latitude dependence, and that the orientation of the polar axis of the AGB star is not aligned with the direction of motion. The ejecta from the type Ia supernova explosion is modeled...
We present two-dimensional and three-dimensional numerical simulations of asymmetric young supernova...
Context. The origin and evolution of supernova remnants of the mixed-morphology class is not well un...
We introduce a deep (670 ks) X-ray survey of the entire SN 1006 remnant from the Chandra X-Ray Obser...
We present new 3D numerical simulations for Kepler´s supernova remnant. In this work we revisit the ...
We present two-dimensional numerical simulations of a model for Kepler's supernova remnant (SNR) car...
Kepler’s supernova remnant resulted from a thermonuclear explosion, but is interacting with circumst...
Synchrotron X-ray emission in young supernova remnants (SNRs) is a powerful diagnostic tool to study...
450 years after the explosion of the Type Ia SN1572, the dynamics of the Tycho supernova remnant can...
The expanding remnant from SN 1987A is an excellent laboratory for investigating the physics of supe...
We present 3D hydrodynamical simulations of the Galactic supernova remnant G352.7−0.1. This remnant ...
We present a model for the type Ia supernova remnant (SNR) of SN 1604, also known as Kepler’s SNR. W...
We report on the results from the analysis of our 114 ks Chandra High Energy Transmision Grating Spe...
We present a model for the type Ia supernova remnant (SNR) of SN 1604, also known as Kepler’s SNR. W...
We report measurements of the X-ray expansion of the youngest Galactic supernova remnant, G1.9+0.3, ...
We performed three-dimensional magnetohydrodynamic simulations to study the evolution of a supernova...
We present two-dimensional and three-dimensional numerical simulations of asymmetric young supernova...
Context. The origin and evolution of supernova remnants of the mixed-morphology class is not well un...
We introduce a deep (670 ks) X-ray survey of the entire SN 1006 remnant from the Chandra X-Ray Obser...
We present new 3D numerical simulations for Kepler´s supernova remnant. In this work we revisit the ...
We present two-dimensional numerical simulations of a model for Kepler's supernova remnant (SNR) car...
Kepler’s supernova remnant resulted from a thermonuclear explosion, but is interacting with circumst...
Synchrotron X-ray emission in young supernova remnants (SNRs) is a powerful diagnostic tool to study...
450 years after the explosion of the Type Ia SN1572, the dynamics of the Tycho supernova remnant can...
The expanding remnant from SN 1987A is an excellent laboratory for investigating the physics of supe...
We present 3D hydrodynamical simulations of the Galactic supernova remnant G352.7−0.1. This remnant ...
We present a model for the type Ia supernova remnant (SNR) of SN 1604, also known as Kepler’s SNR. W...
We report on the results from the analysis of our 114 ks Chandra High Energy Transmision Grating Spe...
We present a model for the type Ia supernova remnant (SNR) of SN 1604, also known as Kepler’s SNR. W...
We report measurements of the X-ray expansion of the youngest Galactic supernova remnant, G1.9+0.3, ...
We performed three-dimensional magnetohydrodynamic simulations to study the evolution of a supernova...
We present two-dimensional and three-dimensional numerical simulations of asymmetric young supernova...
Context. The origin and evolution of supernova remnants of the mixed-morphology class is not well un...
We introduce a deep (670 ks) X-ray survey of the entire SN 1006 remnant from the Chandra X-Ray Obser...