Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Any: 2015, Tutor: Mario CentellesWe consider white dwarfs to be composed by a degenerate electron gas at zero temperature and study the underlying physics. The electron pressure can only balance the gravitational force up to a maximum mass of the white dwarf, the so-called Chandrasekhar mass. By writing our own code, we have found the value of this limiting mass to be 1.417 solar masses, in accordance with most observations. However, recent discoveries of overluminous type Ia supernovae explosions suggest white dwarf masses above the Chandrasekhar limit. Motivated by recent literature, we show in this work that the presence of an intense magnetic field in the ...
We consider a relativistic, degenerate electron gas at zero temperature under the influence of a str...
We present an analysis of the close double degenerate NLTT 12758, which is comprised of a magnetic ...
International audienceElectron captures by atomic nuclei in dense matter are among the most importan...
Is the Chandrasekhar mass limit for white dwarfs (WDs) set in stone? Not anymore, recent observation...
This article belongs to the Special Issue Physics and Symmetry Section: Feature Papers 2022.We inves...
Abstract We investigate the luminosity suppression and its effect on the mass–radius ...
Type Ia supernovae, sparked off by exploding white dwarfs of mass close to the Chandrasekhar limit, ...
The recent discovery of several overluminous type Ia supernovae (SNe Ia) indicates that the explosiv...
The recent discovery of several overluminous type Ia supernovae (SNe Ia) indicates that the explosiv...
In recent years a number of white dwarfs have been observed with very high surface magnetic fields. ...
ABSTRACT Generally the virial theorem provides a relation between various components ...
We address the issue of stability of recently proposed significantly super-Chandrasekhar white dwarf...
We investigate the Chandrasekhar mass limit for white dwarfs in various models of $f(R)$ gravity. Tw...
We clarify important physics issues related to the recently established new mass limit for magnetize...
We develop a detailed and self-consistent numerical model, assuming a poloidal magnetic field, for e...
We consider a relativistic, degenerate electron gas at zero temperature under the influence of a str...
We present an analysis of the close double degenerate NLTT 12758, which is comprised of a magnetic ...
International audienceElectron captures by atomic nuclei in dense matter are among the most importan...
Is the Chandrasekhar mass limit for white dwarfs (WDs) set in stone? Not anymore, recent observation...
This article belongs to the Special Issue Physics and Symmetry Section: Feature Papers 2022.We inves...
Abstract We investigate the luminosity suppression and its effect on the mass–radius ...
Type Ia supernovae, sparked off by exploding white dwarfs of mass close to the Chandrasekhar limit, ...
The recent discovery of several overluminous type Ia supernovae (SNe Ia) indicates that the explosiv...
The recent discovery of several overluminous type Ia supernovae (SNe Ia) indicates that the explosiv...
In recent years a number of white dwarfs have been observed with very high surface magnetic fields. ...
ABSTRACT Generally the virial theorem provides a relation between various components ...
We address the issue of stability of recently proposed significantly super-Chandrasekhar white dwarf...
We investigate the Chandrasekhar mass limit for white dwarfs in various models of $f(R)$ gravity. Tw...
We clarify important physics issues related to the recently established new mass limit for magnetize...
We develop a detailed and self-consistent numerical model, assuming a poloidal magnetic field, for e...
We consider a relativistic, degenerate electron gas at zero temperature under the influence of a str...
We present an analysis of the close double degenerate NLTT 12758, which is comprised of a magnetic ...
International audienceElectron captures by atomic nuclei in dense matter are among the most importan...