White dwarfs are almost completely degenerate objects that cannot obtain energy from the thermonuclear sources and their evolution is just a gravothermal process of cooling. The simplicity of these objects, the fact that the physical inputs necessary to understand them are well identified, although not always well understood, and the impressive observational background about white dwarfs make them the most well studied Galactic population. These characteristics allow to use them as laboratories to test new ideas of physics. In this contribution we discuss the robustness of the method and its application to the axion case
White dwarfs cool through several processes, including the emission of weakly interacting particles ...
We employ a state-of-the-art asteroseismological model of G117-B15A, the archetype of the H-rich atm...
Axions are possible candidates of dark matter in the present Universe. They have been argued to form...
White dwarfs are almost completely degenerate objects that cannot obtain energy from the thermonucle...
White dwarfs are almost completely degenerate objects that cannot obtain energy from thermonuclear s...
The evolution of white dwarfs can be described as a simple cooling process. Recently, it has been po...
The evolution of white dwarfs is a simple gravothermal process of cooling. Since the shape of their ...
White dwarfs are the end product of the lives of intermediate- and low-mass stars and their evolutio...
Context. Axions are the natural consequence of the introduction of the Peccei-Quinn symmetry to solv...
Abstract. White dwarfs are well studied objects. The relative simplic-ity of their physics allows to...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful too...
The evolution of white dwarfs is essentially a gravothermal process of cooling in which the basic in...
White dwarfs are well studied objects. The relative simplicity of their physics allows to obtain ver...
The Peccei-Quinn mechanism proposed to solve the CP problem of Quantum Chromodynamics has as consequ...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful t...
White dwarfs cool through several processes, including the emission of weakly interacting particles ...
We employ a state-of-the-art asteroseismological model of G117-B15A, the archetype of the H-rich atm...
Axions are possible candidates of dark matter in the present Universe. They have been argued to form...
White dwarfs are almost completely degenerate objects that cannot obtain energy from the thermonucle...
White dwarfs are almost completely degenerate objects that cannot obtain energy from thermonuclear s...
The evolution of white dwarfs can be described as a simple cooling process. Recently, it has been po...
The evolution of white dwarfs is a simple gravothermal process of cooling. Since the shape of their ...
White dwarfs are the end product of the lives of intermediate- and low-mass stars and their evolutio...
Context. Axions are the natural consequence of the introduction of the Peccei-Quinn symmetry to solv...
Abstract. White dwarfs are well studied objects. The relative simplic-ity of their physics allows to...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful too...
The evolution of white dwarfs is essentially a gravothermal process of cooling in which the basic in...
White dwarfs are well studied objects. The relative simplicity of their physics allows to obtain ver...
The Peccei-Quinn mechanism proposed to solve the CP problem of Quantum Chromodynamics has as consequ...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful t...
White dwarfs cool through several processes, including the emission of weakly interacting particles ...
We employ a state-of-the-art asteroseismological model of G117-B15A, the archetype of the H-rich atm...
Axions are possible candidates of dark matter in the present Universe. They have been argued to form...