Magnetic field estimates for accreting neutron stars in massive binary systems and models of magnetic field decay
arXiv:1112.1123 · doi:10.1016/j.newast.2012.01.004
Abstract
Some modern models of neutron star evolution predict that initially large magnetic fields rapidly decay down to some saturation value G and weaker magnetic fields do not decay significantly (Pons). It is difficult to check the predictions of this model for initially highly magnetized objects on the time scale of a few million years. We propose to use Be/X-ray binaries for this purpose. We apply several methods to estimate magnetic fields of neutron stars in these accreting systems using the data obtained by the RXTE satellite (Galache). Only using the most modern approach for estimating the magnetic field strengths of long period NSs as proposed by Shakura we are able to obtain a field distribution compatible with predictions of the theoretical model of field decay of Pons.
27 pages, 6 figures, accepted to New Astronomy
References in corpus (12)
- The ATNF Pulsar Catalogue
- The strongest cosmic magnets: Soft Gamma-ray Repeaters and Anomalous X-ray Pulsars
- Be/X-ray binaries
- The Evolution of Compact Binary Star Systems
- Catalogue of high-mass X-ray binaries in the Galaxy ( edition)
- The Magnificent Seven: Magnetic fields and surface temperature distributions
- Theory of quasi-spherical accretion in X-ray pulsars
- Magnetic field dissipation in neutron star crusts: from magnetars to isolated neutron stars
- Magnetar outbursts: an observational review
- A Long Look at the Be/X-Ray Binaries of the Small Magellanic Cloud
- Central Compact Objects in Supernova Remnants
- X-ray views of neutron star low-mass X-ray binaries
Cited by in corpus (20)
- Spin period change and the magnetic fields of neutron stars in Be X-ray binaries in the Small Magellanic Cloud
- Equilibrium spin pulsars unite neutron star populations
- Magnetars: a short review and some sparse considerations
- On the nature of `off' states in slowly rotating low-luminosity X-ray pulsars
- SXP 1062: an Evolved Magnetar in a BeXB ?
- Probing the neutron star spin evolution in the young SMC Be/X-ray binary SXP 1062
- Settling accretion onto slowly rotating X-ray pulsars
- Post fall-back evolution of multipolar magnetic fields and radio pulsar activation
- Modified pulsar current analysis: probing magnetic field evolution
- How to make a mature accreting magnetar
- Braking indices of young radio pulsars: theoretical perspective
- Did GW170817 harbor a pulsar?
- Unifying neutron stars: getting to GUNS
- Saturation properties of nuclear matter in the presence of strong magnetic field
- Diversity Of Short Gamma-Ray Burst Afterglows From Compact Binary Mergers Hosting Pulsars
- Refinement of the timing-based estimator of pulsar magnetic fields
- On the Bimodal Spin Period Distribution of Be/X-ray Pulsars
- Inertial oscillation modes of an inclined dipolar magnetosphere as a source of band-limited noise in X-ray pulsars
- The apparent decay of pulsar magnetic fields
- Existence of conserved quantities and their algebra in curved spacetime