A region of toroidally oriented quantized flux lines must exist in the proton superconductor in the core of the neutron star. This region will be a site of vortex pinning and creep. Entrainment of the neutron superfluid with the crustal lattice leads to a requirement of superfluid moment of inertia associated with vortex creep in excess of the available crustal moment of inertia. This will bring about constraints on the equation of state. The toroidal flux region provides the moment of inertia necessary to complement the crust superfluid with postglitch relaxation behavior fitting the observations
International audienceTo account for pulsar frequency glitches, it is necessary to use a neutron sta...
We consider a mechanism by which most of the magnetic field in the core of a spinning-down neutron s...
Aims.To determine whether “vortex creep” in neutron stars, the slow motion of neutron vortices wit...
A region of toroidally oriented quantized flux lines must exist in the proton superconductor in the ...
Treatment of the vortex motion in the superfluids of the inner crust and the outer core of neutron s...
In our earlier works, we have calculated the correlated creep velocity of a vortex line with line te...
The magnetized vortex lines of the 3P2 paired neutron superfluid are effectively pinned by the magne...
Observations of pulsar timing suggest that glitches and post-glitch behavior are due to variable cou...
International audienceThe buildup of the stress whose relaxation is presumed to account for pulsar f...
The crust of a neutron star is thought to be comprised of a lattice of nuclei immersed in a sea of f...
High resolution, pulse to pulse observation of the 2016 Vela glitch and its relaxation provided an o...
Treatment of the vortex motion in the superfluids of the inner crust and the outer core of neutron s...
Pinning of superfluid vortices is predicted to prevail throughout much of a neu-tron star. Based on ...
Within the framework of recent hydrodynamic models of pulsar glitches, we explore systematically the...
The high density interior of a neutron star is expected to contain superconducting protons and super...
International audienceTo account for pulsar frequency glitches, it is necessary to use a neutron sta...
We consider a mechanism by which most of the magnetic field in the core of a spinning-down neutron s...
Aims.To determine whether “vortex creep” in neutron stars, the slow motion of neutron vortices wit...
A region of toroidally oriented quantized flux lines must exist in the proton superconductor in the ...
Treatment of the vortex motion in the superfluids of the inner crust and the outer core of neutron s...
In our earlier works, we have calculated the correlated creep velocity of a vortex line with line te...
The magnetized vortex lines of the 3P2 paired neutron superfluid are effectively pinned by the magne...
Observations of pulsar timing suggest that glitches and post-glitch behavior are due to variable cou...
International audienceThe buildup of the stress whose relaxation is presumed to account for pulsar f...
The crust of a neutron star is thought to be comprised of a lattice of nuclei immersed in a sea of f...
High resolution, pulse to pulse observation of the 2016 Vela glitch and its relaxation provided an o...
Treatment of the vortex motion in the superfluids of the inner crust and the outer core of neutron s...
Pinning of superfluid vortices is predicted to prevail throughout much of a neu-tron star. Based on ...
Within the framework of recent hydrodynamic models of pulsar glitches, we explore systematically the...
The high density interior of a neutron star is expected to contain superconducting protons and super...
International audienceTo account for pulsar frequency glitches, it is necessary to use a neutron sta...
We consider a mechanism by which most of the magnetic field in the core of a spinning-down neutron s...
Aims.To determine whether “vortex creep” in neutron stars, the slow motion of neutron vortices wit...