The neutron star in Cassiopeia A: equation of state, superfluidity, and Joule heating
arXiv:1311.2153 · doi:10.1051/0004-6361/201322514
Abstract
The thermomagnetic evolution of the young neutron star in Cassiopea A is studied by considering fast neutrino emission processes. In particular, we consider neutron star models obtained from the equation of state computed in the framework of the Brueckner-Bethe-Goldstone many-body theory and variational methods, and models obtained with the Akmal-Pandharipande-Ravenhall equation of state. It is shown that it is possible to explain a fast cooling regime as the one observed in the neutron star in Cassiopea A if the Joule heating produced by dissipation of the small-scale magnetic field in the crust is taken into account. We thus argue that it is difficult to put severe constraints on the superfluid gap if the Joule heating is considered.
4 pages, 2 figures, to appear on A&A Letters
References in corpus (6)
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- The Expansion Asymmetry and Age of the Cassiopeia A Supernova Remnant
- Measuring the Cooling of the Neutron Star in Cassiopeia A with all Chandra X-ray Observatory Detectors
- Precise Timing of the X-ray Pulsar 1E 1207.4-5209: A Steady Neutron Star Weakly Magnetized at Birth
- Protoneutron star dynamos: pulsars, magnetars, and radio-silent X-ray emitting neutron stars
- Joule heating in high magnetic field pulsars
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- The Nuclear Symmetry Energy
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- Superfluidity and Superconductivity in Neutron Stars
- Diffusive nuclear burning in cooling simulations and application to new temperature data of the Cassiopeia A neutron star
- Constraints on the symmetry energy from observational probes of the neutron star crust
- Cassiopeia A and direct URCA cooling
- Role of nucleonic Fermi surface depletion in neutron star cooling
- X-ray bounds on cooling, composition, and magnetic field of the Cassiopeia A neutron star and young central compact objects
- Quasi-normal modes of superfluid neutron stars
- Simultaneous Fitting of Neutron Star Structure and Cooling Data
- Model-independent constraints on superfluidity from the cooling neutron star in Cassiopeia A
- Self-similarity relations for cooling superfluid neutron stars
- Constraints on neutron star superfluidity from the cooling neutron star in Cassiopeia A using all Chandra ACIS-S observations
- Role of nucleon-nucleon correlation in transport coefficients and gravitational-wave-driven -mode instability of neutron stars
- Hybrid cooling of the Cassiopeia A neutron star
- Neutron star cooling within the equation of state with induced surface tension
- Neutron star cooling with a dynamic stellar structure
- IGR J17480-2446: a new class of accreting binaries?
- Axion Emission from Proton Cooper Pairs in Neutron Stars