Aims. We present evolutionary calculations and colors for massive white dwarfs with oxygen-neon cores for masses between 1.06 and 1.28 M ⊙. The evolutionary stages computed cover the luminosity range from log(L/L⊙) ≈ 0.5 down to -5.2. Methods. Our cooling sequences are based on evolutionary calculations that take into account the chemical composition expected from massive white dwarf progenitors that burned carbon in partially degenerate conditions. The use of detailed non-gray model atmospheres provides us with accurate outer boundary conditions for our evolving models at low effective temperatures. Results. We examine the cooling age, colors and magnitudes of our sequences. We find that massive white dwarfs are characterized by very short...
The present work is designed to explore the evolution of helium-core white dwarf (He WD) stars for t...
White dwarfs are the most common stellar evolutionary end-point. Moreover, they can be considered as...
Ultra-massive white dwarfs are powerful tools used to study various physical processes in the asympt...
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...
The purpose of this work is to explore the evolution of helium-core white dwarf stars in a self-cons...
We present full evolutionary calculations appropriate for the study of hot hydrogen-deficient DO whi...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
Ultra-massive white dwarfs ( M WD1 . 05 M ) are considered powerful tools to study Type Ia supernova...
We present detailed evolutionary calculations for carbon - oxygen - and helium - core white dwarf mo...
Aims. Motivated by the recent detection of single and binary He-core white dwarfs in metal-rich clus...
Context. The number of detected extremely low-mass (ELM) white dwarf stars has increased drastically...
Context. The number of detected extremely low-mass (ELM) white dwarf stars has increased drastically...
We present a set of full evolutionary sequences for white dwarfs with hydrogen-deficient atmospheres...
White dwarf stars are the most common end point of stellar evolution. The ultramassive white dwarfs ...
The present work is designed to explore the evolution of helium-core white dwarf (He WD) stars for t...
White dwarfs are the most common stellar evolutionary end-point. Moreover, they can be considered as...
Ultra-massive white dwarfs are powerful tools used to study various physical processes in the asympt...
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...
The purpose of this work is to explore the evolution of helium-core white dwarf stars in a self-cons...
We present full evolutionary calculations appropriate for the study of hot hydrogen-deficient DO whi...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
Ultra-massive white dwarfs ( M WD1 . 05 M ) are considered powerful tools to study Type Ia supernova...
We present detailed evolutionary calculations for carbon - oxygen - and helium - core white dwarf mo...
Aims. Motivated by the recent detection of single and binary He-core white dwarfs in metal-rich clus...
Context. The number of detected extremely low-mass (ELM) white dwarf stars has increased drastically...
Context. The number of detected extremely low-mass (ELM) white dwarf stars has increased drastically...
We present a set of full evolutionary sequences for white dwarfs with hydrogen-deficient atmospheres...
White dwarf stars are the most common end point of stellar evolution. The ultramassive white dwarfs ...
The present work is designed to explore the evolution of helium-core white dwarf (He WD) stars for t...
White dwarfs are the most common stellar evolutionary end-point. Moreover, they can be considered as...
Ultra-massive white dwarfs are powerful tools used to study various physical processes in the asympt...