The high density interior of a neutron star is expected to contain superconducting protons and superfluid neutrons. Theoretical estimates suggest that the protons will form a type II superconductor in which the stellar magnetic field is carried by flux tubes. The strong interaction between the flux tubes and the neutron rotational vortices could lead to strong 'pinning', i.e. vortex motion could be impeded. This has important implications especially for pulsar glitch models as it would lead to a large part of the vorticity of the star being decoupled from the 'normal' component, to which the electromagnetic emission is locked. In this paper we explore the consequences of strong pinning in the core on the 'snowplow' model for pulsar glitches...
Neutron stars are surely one of the most interesting astronomical objects: in no other place of the ...
In this dissertation I discuss how observations of the maximum glitch occurred in a certain pulsar p...
Pulsar glitches provide a unique way to study neutron star microphysics because short post-glitch dy...
The high-density interior of a neutron star is expected to contain superconducting protons and super...
Neutron stars are unique cosmic laboratories in which fundamental physics can be probed in extreme c...
In this proceeding we present a quantitative model to study the pinning interaction between a neutro...
Abstract Timing of the Crab and Vela pulsars have recently revealed very peculiar evolutions of thei...
The angular momentum transfer associated to Vela-like glitches has never been calculated directly wi...
Realistic values for the pinning energies of vortices in the neutron superfluid expected in the inne...
In a recent paper by Link, it was pointed out that the the standard picture of the neutron star core...
Neutron stars are the most compact known stars; their cores are of higher density than an atomic nuc...
M.Sc.The content of this dissertation is directed at a clearer understanding of pulsar behaviour. Pu...
We suggest a mechanism that may resolve a conflict between the precession of a neutron star and the...
Many radio pulsars exhibit glitches wherein the star\u27s spin rate increases fractionally by ~10-10...
Pinning of superfluid vortices is predicted to prevail throughout much of a neu-tron star. Based on ...
Neutron stars are surely one of the most interesting astronomical objects: in no other place of the ...
In this dissertation I discuss how observations of the maximum glitch occurred in a certain pulsar p...
Pulsar glitches provide a unique way to study neutron star microphysics because short post-glitch dy...
The high-density interior of a neutron star is expected to contain superconducting protons and super...
Neutron stars are unique cosmic laboratories in which fundamental physics can be probed in extreme c...
In this proceeding we present a quantitative model to study the pinning interaction between a neutro...
Abstract Timing of the Crab and Vela pulsars have recently revealed very peculiar evolutions of thei...
The angular momentum transfer associated to Vela-like glitches has never been calculated directly wi...
Realistic values for the pinning energies of vortices in the neutron superfluid expected in the inne...
In a recent paper by Link, it was pointed out that the the standard picture of the neutron star core...
Neutron stars are the most compact known stars; their cores are of higher density than an atomic nuc...
M.Sc.The content of this dissertation is directed at a clearer understanding of pulsar behaviour. Pu...
We suggest a mechanism that may resolve a conflict between the precession of a neutron star and the...
Many radio pulsars exhibit glitches wherein the star\u27s spin rate increases fractionally by ~10-10...
Pinning of superfluid vortices is predicted to prevail throughout much of a neu-tron star. Based on ...
Neutron stars are surely one of the most interesting astronomical objects: in no other place of the ...
In this dissertation I discuss how observations of the maximum glitch occurred in a certain pulsar p...
Pulsar glitches provide a unique way to study neutron star microphysics because short post-glitch dy...