A rotationally-powered magnetar nebula around Swift J1834.9-0846
arXiv:1612.02835 · doi:10.3847/1538-4357/835/1/54
Abstract
A wind nebula, generating extended X-ray emission, was recently detected surrounding Swift J1834.9-0846. This is the first magnetar for which such a wind nebula was found. Here, we investigate whether there is a plausible scenario where the pulsar wind nebula (PWN) can be sustained without the need of advocating for additional sources of energy other than rotational. We do this by using a detailed radiative and dynamical code that studies the evolution of the nebula and its particle population in time. We find that such a scenario indeed exists: Swift J1834.9-0846's nebula can be explained as being rotationally-powered, as all other known PWNe are, if it is currently being compressed by the environment. The latter introduces several effects, the most important of which is the appearance of adiabatic heating, being increasingly dominant over the escape of particles as reverberation goes by. The need of reverberation naturally explains why this is the only magnetar nebula detected, and provides estimates for Swift 1834.9-0846's age.
In press in ApJ. Accepted for publication on December 3, 2016
References in corpus (9)
- The Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey
- Transient pulsed radio emission from a magnetar
- 1E 1547.0-5408: a radio-emitting magnetar with a rotation period of 2 seconds
- A Dynamical Model for the Evolution of a Pulsar Wind Nebula inside a Non-Radiative Supernova Remnant
- The fundamental plane for radio magnetars
- The Distances of SNR W41 and overlapping HII regions
- VLA and XMM-Newton observations of the SNR W41/TeV Gamma-ray source HESS J1834-087
- Comparing supernova remnants around strongly magnetized and canonical pulsars
- X-ray and radio observations of the magnetar Swift J1834.9-0846 and its dust-scattering halo
Cited by in corpus (9)
- Pulsar-wind nebulae and magnetar outflows: observations at radio, X-ray, and gamma-ray wavelengths
- Reverberation of pulsar wind nebulae (I): Impact of the medium properties and other parameters upon the extent of the compression
- Reverberation of pulsar wind nebulae (II): Anatomy of the "thin-shell'' evolution
- From young to old: the evolutionary path of Pulsar Wind Nebulae
- Reverberation of pulsar wind nebulae (III): Modelling of the plasma interface empowering a long term radiative evolution
- Towards observing reverberating and superefficient pulsar wind nebulae
- LHAASO J2226+6057 as a pulsar wind nebula
- Pulsar Wind Nebulae
- Multiwavelength study of non-thermal emission in the Swift J1834.9-0846/W41 region