During the life of isolated neutron stars (NSs) their magnetic field passes through a variety of evolutionary phases. Depending on its strength and structure and on the physical state of the NS (e.g. cooling, rotation), the field looks qualitatively and quantitatively different after each of these phases. Three of them, the phase of MHD instabilities immediately after NS's birth, the phase of fallback which may take place hours to months after NS's birth, and the phase when strong temperature gradients may drive thermoelectric instabilities, are concentrated in a period lasting from the end of the proto--NS phase until 100, perhaps 1000 years, when the NS has become almost isothermal. The further evolution of the magnetic field proceeds in ...
The strong magnetic field of neutron stars is intimately coupled to the observed temperature and spe...
Sorry, the full-text is not available here. Please click on the alternative location.We investigate...
There exists both theoretical and observational evidence that the magnetic field decay in neutron st...
During the life of isolated neutron stars (NSs) their magnetic field passes through a variety of e...
During the life of isolated neutron stars (NSs) their magnetic field passes through a variety of e...
This paper reviews the current status of the theoretical models of the evolution of the magnetic fie...
The evolution of the magnetic field is investigated for isolated as well as binary neutron stars. Th...
Observational evidence, and theoretical models of the magnetic field evolution of neutron stars is d...
We consider the magnetic and spin evolution of isolated neutron stars assuming that the magnetic fie...
Context. The rotational evolution of isolated neutron stars is dominated by the magnetic field ancho...
Neutron stars are natural physical laboratories allowing us to study a plethora of phenomena in extr...
We investigate the evolution of the magnetic fields of isolated pulsars and neutron stars in differe...
Context. The rotational evolution of isolated neutron stars is dominated by the magnetic field ancho...
Context. The rotational evolution of isolated neutron stars is dominated by the magnetic field ancho...
We apply the model of flux expulsion from the superfluid and superconductive core of a neutron star,...
The strong magnetic field of neutron stars is intimately coupled to the observed temperature and spe...
Sorry, the full-text is not available here. Please click on the alternative location.We investigate...
There exists both theoretical and observational evidence that the magnetic field decay in neutron st...
During the life of isolated neutron stars (NSs) their magnetic field passes through a variety of e...
During the life of isolated neutron stars (NSs) their magnetic field passes through a variety of e...
This paper reviews the current status of the theoretical models of the evolution of the magnetic fie...
The evolution of the magnetic field is investigated for isolated as well as binary neutron stars. Th...
Observational evidence, and theoretical models of the magnetic field evolution of neutron stars is d...
We consider the magnetic and spin evolution of isolated neutron stars assuming that the magnetic fie...
Context. The rotational evolution of isolated neutron stars is dominated by the magnetic field ancho...
Neutron stars are natural physical laboratories allowing us to study a plethora of phenomena in extr...
We investigate the evolution of the magnetic fields of isolated pulsars and neutron stars in differe...
Context. The rotational evolution of isolated neutron stars is dominated by the magnetic field ancho...
Context. The rotational evolution of isolated neutron stars is dominated by the magnetic field ancho...
We apply the model of flux expulsion from the superfluid and superconductive core of a neutron star,...
The strong magnetic field of neutron stars is intimately coupled to the observed temperature and spe...
Sorry, the full-text is not available here. Please click on the alternative location.We investigate...
There exists both theoretical and observational evidence that the magnetic field decay in neutron st...