We study the effects of the sedimentation of the trace element 22Ne in the cooling of white dwarfs. In contrast with previous studies—which adopted a simplified treatment of the effects of 22Ne sedimentation—this is done self-consistently for the first time, using an up-to-date stellar evolutionary code in which the diffusion equation is coupled with the full set of equations of stellar evolution. Due the large neutron excess of 22Ne, this isotope rapidly sediments in the interior of the white dwarf. Although we explore a wide range of parameters, we find that when using the most reasonable assumptions concerning the diffusion coefficient and the physical state of the white dwarf interior, the delay introduced by the ensuing chemical differ...
This paper is aimed at exploring the effects of diffusion on the structure and evolution of low-mass...
Aims. We analyzed the effect of the sedimentation of 22Ne on the local white dwarf luminosity functi...
NGC 6791 is a well studied open cluster1 that it is so close to us that can be imaged down to very f...
We study the effects of the sedimentation of the trace element 22Ne in the cooling of white dwarfs. ...
© 2016. The American Astronomical Society. All rights reserved. Because of the large neutron excess ...
Because of the large neutron excess of 22Ne, sedimentation of this isotope occurs rapidly in the int...
We assess the impact of the trace element ^{22}Ne on the cooling and seismology of a liquid C/O whit...
Aims. Gravitational settling of 22Ne in cooling white dwarfs can affect the outcome of thermonuclear...
Motivated by the strong discrepancy between the main-sequence turnoff age and the white dwarf coolin...
White dwarf stars are the most common end point of stellar evolution. The ultramassive white dwarfs ...
Aims. Gravitational settling of 22Ne in cooling white dwarfs can affect the outcome of thermonuclear...
We analyzed the effect of the sedimentation of 22Ne on the local white dwarf luminosity function by ...
White dwarf stars are the most common end point of stellar evolution. The ultramassive white dwarfs ...
White dwarfs are the most common stellar evolutionary end-point. Moreover, they can be considered as...
This paper is aimed at exploring the effects of diffusion on the structure and evolution of low-mass...
Aims. We analyzed the effect of the sedimentation of 22Ne on the local white dwarf luminosity functi...
NGC 6791 is a well studied open cluster1 that it is so close to us that can be imaged down to very f...
We study the effects of the sedimentation of the trace element 22Ne in the cooling of white dwarfs. ...
© 2016. The American Astronomical Society. All rights reserved. Because of the large neutron excess ...
Because of the large neutron excess of 22Ne, sedimentation of this isotope occurs rapidly in the int...
We assess the impact of the trace element ^{22}Ne on the cooling and seismology of a liquid C/O whit...
Aims. Gravitational settling of 22Ne in cooling white dwarfs can affect the outcome of thermonuclear...
Motivated by the strong discrepancy between the main-sequence turnoff age and the white dwarf coolin...
White dwarf stars are the most common end point of stellar evolution. The ultramassive white dwarfs ...
Aims. Gravitational settling of 22Ne in cooling white dwarfs can affect the outcome of thermonuclear...
We analyzed the effect of the sedimentation of 22Ne on the local white dwarf luminosity function by ...
White dwarf stars are the most common end point of stellar evolution. The ultramassive white dwarfs ...
White dwarfs are the most common stellar evolutionary end-point. Moreover, they can be considered as...
This paper is aimed at exploring the effects of diffusion on the structure and evolution of low-mass...
Aims. We analyzed the effect of the sedimentation of 22Ne on the local white dwarf luminosity functi...
NGC 6791 is a well studied open cluster1 that it is so close to us that can be imaged down to very f...