Magnetic field decay in neutron stars: from Soft Gamma Repeaters to "weak field magnetars"
arXiv:1110.2498 · doi:10.1111/j.1365-2966.2012.20612.x
Abstract
The recent discovery of the "weak field, old magnetar", the soft gamma repeater SGR 0418+5729, whose dipole magnetic field is less than 7.5 \times 10^{12} G, has raised perplexing questions: How can the neutron star produce SGR-like bursts with such a low magnetic field? What powers the observed X-ray emission when neither the rotational energy nor the magnetic dipole energy are sufficient? These observations, that suggest either a much larger energy reservoir or a much younger true age (or both), have renewed the interest in the evolutionary sequence of magnetars. We examine, here, a phenomenological model for the magnetic field decay: B_dip} \propto (B_dip)^{1+a} and compare its predictions with the observed period, P,the period derivative, \dot{P}, and the X-ray luminosity, L_X, of magnetar candidates. We find a strong evidence for a dipole field decay on a timescale of \sim 10^3 yr for the strongest (\sim 10^{15} G) field objects, with a decay index within the range 1 \leq a < 2 and more likely within 1.5\lesssim a \lesssim 1.8. The decaying field implies a younger age than what is implied by the spinown age. Surprisingly, even with the younger age, the energy released in the dipole field decay is insufficient to power the X-ray emission, suggesting the existence of a stronger internal field, B_int. Examining several models for the internal magnetic field decay we find that it must have a very large (> 10^{16} G) initial value. Our findings suggest two clear distinct evolutionary tracks -- the SGR/AXP branch and the transient branch, with a possible third branch involving high-field radio pulsars that age into low luminosity X-ray dim isolated neutron stars.
47 pages, 11 figures, accepted for publication on MNRAS, in press
References in corpus (19)
- The strongest cosmic magnets: Soft Gamma-ray Repeaters and Anomalous X-ray Pulsars
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Transient pulsed radio emission from a magnetar
- Corona of Magnetars
- Untwisting magnetospheres of neutron stars
- 1E 1547.0-5408: a radio-emitting magnetar with a rotation period of 2 seconds
- Magnetar-like Emission from the Young Pulsar in Kes 75
- Discovery of luminous pulsed hard X-ray emission from anomalous X-ray pulsars 1RXS J1708-4009, 4U 0142+61 and 1E 2259+586 by INTEGRAL and RXTE
- Magnetic field dissipation in neutron star crusts: from magnetars to isolated neutron stars
- A unified model of the magnetar and radio pulsar bursting phenomenology
- Distances to Anomalous X-ray Pulsars using Red Clump Stars
- Magnetar outbursts: an observational review
- Is SGR 0418+5729 indeed a waning magnetar ?
- From outburst to quiescence: the decay of the transient Anomalous X-ray Pulsar XTE J1810-197
- Heating and cooling of magnetars with accreted envelopes
- Cooling of Neutron Stars with Strong Toroidal Magnetic Fields
- SGR 0418+5729 - How does a Young Neutron Star Spin Down to a 9 s Period with a Dipole Field less than 10^13 G?
- A Coherent Timing Solution for the Nearby, Thermally Emitting Isolated Neutron Star RX J0420.0-5022
- Joule heating in high magnetic field pulsars
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