Spectral features in isolated neutron stars induced by inhomogeneous surface temperatures
arXiv:1406.0874 · doi:10.1093/mnras/stu1109
Abstract
The thermal X-ray spectra of several isolated neutron stars display deviations from a pure blackbody. The accurate physical interpretation of these spectral features bears profound implications for our understanding of the atmospheric composition, magnetic field strength and topology, and equation of state of dense matter. With specific details varying from source to source, common explanations for the features have ranged from atomic transitions in the magnetized atmospheres or condensed surface, to cyclotron lines generated in a hot ionized layer near the surface. Here we quantitatively evaluate the X-ray spectral distortions induced by inhomogeneous temperature distributions of the neutron star surface. To this aim, we explore several surface temperature distributions, we simulate their corresponding general relativistic X-ray spectra (assuming an isotropic, blackbody emission), and fit the latter with a single blackbody model. We find that, in some cases, the presence of a spurious 'spectral line' is required at a high significance level in order to obtain statistically acceptable fits, with central energy and equivalent width similar to the values typically observed. We also perform a fit to a specific object, RX J0806.4-4123, finding several surface temperature distributions able to model the observed spectrum. The explored effect is unlikely to work in all sources with detected lines, but in some cases it can indeed be responsible for the appearance of such lines. Our results enforce the idea that surface temperature anisotropy can be an important factor that should be considered and explored also in combination with more sophisticated emission models like atmospheres.
11 pages, 7 figures; accepted for publication in MNRAS
References in corpus (15)
- The strongest cosmic magnets: Soft Gamma-ray Repeaters and Anomalous X-ray Pulsars
- Magnetic Hydrogen Atmosphere Models and the Neutron Star RX J1856.5-3754
- Atmosphere Models of Magnetized Neutron Stars: QED Effects, Radiation Spectra, and Polarization Signals
- Resonant cyclotron scattering in magnetars' emission
- Evidence for precession of the isolated neutron star RX J0720.4-3125
- Discovery of Pulsations and a Possible Spectral Feature in the X-ray Emission from Rotating Radio Transient J1819-1458
- Constraining the Spin-down of the Nearby Isolated Neutron Star RX J2143.0+0654
- From outburst to quiescence: the decay of the transient Anomalous X-ray Pulsar XTE J1810-197
- Constraints on the Emission and Viewing Geometry of the Transient Anomalous X-ray Pulsar XTE J1810-197
- Constraining the Geometry of the Neutron Star RX J1856.5-3754
- The complex X-ray spectrum of the isolated neutron star RBS1223
- Cooling of Neutron Stars with Strong Toroidal Magnetic Fields
- Models of magnetized neutron star atmospheres: thin atmospheres and partially ionized hydrogen atmospheres with vacuum polarization
- A self-consistent model of isolated neutron stars: the case of the X-ray pulsar RX J0720.4-3125
- The peculiar isolated neutron star in the Carina Nebula - Deep XMM-Newton and ESO-VLT observations of 2XMM J104608.7-594306
Cited by in corpus (12)
- Magneto-thermal evolution of neutron stars with coupled Ohmic, Hall and ambipolar effects via accurate finite-volume simulations
- X-ray Emission from Isolated Neutron Stars revisited: 3D magnetothermal simulations
- Fermionic Light Dark Matter particles and the New Physics of Neutron Stars
- A deep XMM-Newton look on the thermally emitting isolated neutron star RX J1605.3+3249
- 3D code for MAgneto-Thermal evolution in Isolated Neutron Stars, MATINS: thermal evolution and lightcurves
- Thermal and non-thermal X-ray emission from the rotation-powered radio/-ray pulsar PSR J1740+1000
- XMM-Newton observations of PSR J0726-2612, a radio-loud XDINS
- Phase-resolved X-ray spectroscopy of PSR B0656+14 with SRG/eROSITA and XMM-Newton
- Magnetar Outburst Models with Cooling Simulations
- Pulsed, Polarized X-ray Emission from Neutron Star Surfaces: the Effects of Vacuum Birefringence in the Magnetosphere
- The short bursts in SGR 1806-20, 1E 1048-5937 and SGR 0501+4516
- Microphysics of Neutron Star Outer Envelopes in the Periodized, Magnetic Thomas-Fermi Model