The white dwarf luminosity function, which provides information about their cooling, has been measured with high precision in the past few years. Simulations that include well known Standard Model physics give a good fit to the data. This leaves little room for new physics and makes these astrophysical objects a good laboratory for testing models beyond the Standard Model. It has already been suggested that white dwarfs might provide some evidence for the existence of axions. In this work we study the constraints that the white dwarf luminosity function puts on physics beyond the Standard Model involving new light particles (fermions or bosons) that can be pair-produced in a white dwarf and then escape to contribute to its cooling. We show,...
Matter budget in the Universe together with primordial nucleosynthesis bounds on baryonic density su...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful t...
Context. Recent determinations of the white dwarf luminosity function (WDLF) from very large surveys...
The white dwarf luminosity function, which provides information about their cooling, has been measur...
Abstract. The white dwarf luminosity function is well understood in terms of standard model physics ...
White dwarfs are the final remnants of low- and intermediate-mass stars. Their evolution is essentia...
The evolution of white dwarfs is essentially a gravothermal process of cooling in which the basic in...
The evolution of white dwarfs can be described as a simple cooling process. Recently, it has been po...
As dense and hot bodies with a well-understood equation of state, white dwarfs offer a unique opport...
White dwarfs cool through several processes, including the emission of weakly interacting particles ...
White dwarfs are the end product of the lives of intermediate- and low-mass stars and their evolutio...
In this paper we briefly review main ideas underlying the constraints on exotic physics coming from...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful too...
WIMPs can be captured in compact stars such as white dwarves (WDs) leading to an increase in the sta...
International audienceBrown dwarfs (BDs) are celestial objects representing the link between the lea...
Matter budget in the Universe together with primordial nucleosynthesis bounds on baryonic density su...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful t...
Context. Recent determinations of the white dwarf luminosity function (WDLF) from very large surveys...
The white dwarf luminosity function, which provides information about their cooling, has been measur...
Abstract. The white dwarf luminosity function is well understood in terms of standard model physics ...
White dwarfs are the final remnants of low- and intermediate-mass stars. Their evolution is essentia...
The evolution of white dwarfs is essentially a gravothermal process of cooling in which the basic in...
The evolution of white dwarfs can be described as a simple cooling process. Recently, it has been po...
As dense and hot bodies with a well-understood equation of state, white dwarfs offer a unique opport...
White dwarfs cool through several processes, including the emission of weakly interacting particles ...
White dwarfs are the end product of the lives of intermediate- and low-mass stars and their evolutio...
In this paper we briefly review main ideas underlying the constraints on exotic physics coming from...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful too...
WIMPs can be captured in compact stars such as white dwarves (WDs) leading to an increase in the sta...
International audienceBrown dwarfs (BDs) are celestial objects representing the link between the lea...
Matter budget in the Universe together with primordial nucleosynthesis bounds on baryonic density su...
It has been shown that the shape of the luminosity function of white dwarfs (WDLF) is a powerful t...
Context. Recent determinations of the white dwarf luminosity function (WDLF) from very large surveys...