Context. Cool white dwarfs are reliable and independent stellar chronometers. The most common white dwarfs have carbon-oxygen dense cores. Consequently, the cooling ages of very cool white dwarfs sensitively depend on the adopted phase diagram of the carbon-oxygen binary mixture. Aims. A new phase diagram of dense carbon-oxygen mixtures appropriate for white dwarf interiors has been recently obtained using direct molecular dynamics simulations. In this paper, we explore the consequences of this phase diagram in the evolution of cool white dwarfs. Methods. To do this we employ a detailed stellar evolutionary code and accurate initial white dwarf configurations, derived from the full evolution of progenitor stars. We use two different phase d...
White dwarfs are stellar embers depleted of nuclear energy sources that cool over billions of years....
White dwarfs are the most common stellar evolutionary end-point. Moreover, they can be considered as...
We explore the adiabatic pulsational properties of massive white dwarf stars with hydrogen-rich enve...
Context. Cool white dwarfs are reliable and independent stellar chronometers. The most common white ...
Context. Cool white dwarfs are reliable and independent stellar chronometers. The most common white ...
In this paper we compute detailed evolutionary models providing chemical profiles for white dwarfs h...
Aims. We present evolutionary calculations and colors for massive white dwarfs with oxygen-neon core...
We present full evolutionary calculations appropriate for the study of hydrogen-rich DA white dwarfs...
Context. An accurate assessment of white dwarf cooling times is paramount so that white dwarf cosmoc...
We explore the physics of crystallization in the dense Coulomb plasma of the deep interiors of white...
Given the importance of white dwarfs (WDs) in many fields of modern astrophysics, the precise knowle...
The 21st European Workshop on White Dwarfs was held in Austin, TX from July 23rd to 27th of 2018Ultr...
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 ...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
White dwarfs are stellar embers depleted of nuclear energy sources that cool over billions of years....
White dwarfs are the most common stellar evolutionary end-point. Moreover, they can be considered as...
We explore the adiabatic pulsational properties of massive white dwarf stars with hydrogen-rich enve...
Context. Cool white dwarfs are reliable and independent stellar chronometers. The most common white ...
Context. Cool white dwarfs are reliable and independent stellar chronometers. The most common white ...
In this paper we compute detailed evolutionary models providing chemical profiles for white dwarfs h...
Aims. We present evolutionary calculations and colors for massive white dwarfs with oxygen-neon core...
We present full evolutionary calculations appropriate for the study of hydrogen-rich DA white dwarfs...
Context. An accurate assessment of white dwarf cooling times is paramount so that white dwarf cosmoc...
We explore the physics of crystallization in the dense Coulomb plasma of the deep interiors of white...
Given the importance of white dwarfs (WDs) in many fields of modern astrophysics, the precise knowle...
The 21st European Workshop on White Dwarfs was held in Austin, TX from July 23rd to 27th of 2018Ultr...
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 ...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
White dwarfs are stellar embers depleted of nuclear energy sources that cool over billions of years....
White dwarfs are the most common stellar evolutionary end-point. Moreover, they can be considered as...
We explore the adiabatic pulsational properties of massive white dwarf stars with hydrogen-rich enve...