Neutron stars host the strongest magnetic fields that we know of in the Universe. Their magnetic fields are the main means of generating their radiation, either magnetospheric or through the crust. Moreover, the evolution of the magnetic field has been intimately related to explosive events of magnetars, which host strong magnetic fields, and their persistent thermal emission. The evolution of the magnetic field in the crusts of neutron stars has been described within the framework of the Hall effect and Ohmic dissipation. Yet, this description is limited by the fact that the Maxwell stresses exerted on the crusts of strongly magnetised neutron stars may lead to failure and temperature variations. In the former case, a failed crust does not...
We continue the study of the effects of a strong magnetic field on the temperature distribution in ...
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...
This work aims at studying how magnetic fields affect the observational properties and the long-term...
We present calculations of magnetic field evolution by the Hall effect and Ohmic decay in neutron st...
Current models of magnetars require extremely strong magnetic fields to explain their observed quies...
Diamond jubilee symposium on pulsars,14-17 March 1994, RRI, Bangalore.Observational evidence, and th...
Isolated neutron stars show a diversity in timing and spectral properties, which has historically le...
There exists both theoretical and observational evidence that the magnetic field decay in neutron st...
This paper reviews the current status of the theoretical models of the evolution of the magnetic fie...
Sorry, the full-text is not available here. Please click on the alternative location to access it.T...
There exists both theoretical and observational evidence that the magnetic field decay in neutron st...
According to the partially screened gap scenario, an efficient electron-positron pair creation, a ge...
Sorry, the full-text is not available here. Please click on the alternative location.We investigate...
We continue the study of the effects of a strong magnetic field on the temperature distribution in ...
We continue the study of the effects of a strong magnetic field on the temperature distribution in ...
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...
This work aims at studying how magnetic fields affect the observational properties and the long-term...
We present calculations of magnetic field evolution by the Hall effect and Ohmic decay in neutron st...
Current models of magnetars require extremely strong magnetic fields to explain their observed quies...
Diamond jubilee symposium on pulsars,14-17 March 1994, RRI, Bangalore.Observational evidence, and th...
Isolated neutron stars show a diversity in timing and spectral properties, which has historically le...
There exists both theoretical and observational evidence that the magnetic field decay in neutron st...
This paper reviews the current status of the theoretical models of the evolution of the magnetic fie...
Sorry, the full-text is not available here. Please click on the alternative location to access it.T...
There exists both theoretical and observational evidence that the magnetic field decay in neutron st...
According to the partially screened gap scenario, an efficient electron-positron pair creation, a ge...
Sorry, the full-text is not available here. Please click on the alternative location.We investigate...
We continue the study of the effects of a strong magnetic field on the temperature distribution in ...
We continue the study of the effects of a strong magnetic field on the temperature distribution in ...
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...