Phase resolved spectroscopic study of the isolated neutron star RBS 1223 (1RXS J130848.6+212708)
arXiv:1108.3897 · doi:10.1051/0004-6361/201117548
Abstract
The data from all observations of RBS 1223 (1RXS J130848.6+212708) conducted by XMM-Newton EPIC pn with the same instrumental setup in 2003-2007 were combined to form spin-phase resolved spectra. A number of complex models of neutron stars with strongly magnetized ( G) surface, with temperature and magnetic field distributions around magnetic poles, and partially ionized hydrogen thin atmosphere above it have been implemented into the X-ray spectral fitting package XSPEC for simultaneous fitting of phase-resolved spectra. A Markov-Chain-Monte-Carlo (MCMC) approach is also applied to verify results of fitting and estimating in multi parameter models. The spectra in different rotational phase intervals and light curves in different energy bands with high S/N ratio show a high complexity. The spectra can be parameterized with a Gaussian absorption line superimposed on a blackbody spectrum, while the light curves with double-humped shape show strong dependence of pulsed fraction upon the energy band (13%-42%), which indicates that radiation emerges from at least two emitting areas. A model with condensed iron surface and partially ionized hydrogen thin atmosphere above it allows us to fit simultaneously the observed general spectral shape and the broad absorption feature observed at 0.3 keV in different spin phases of RBS 1223. It allowed to constrain some physical properties of X-ray emitting areas, i.e. the temperatures ( eV, eV), magnetic field strengths (G) at the poles, and their distributions parameters (, indicating an absence of strong toroidal magnetic field component). In addition, it puts some constraints on the geometry of the emerging X-ray emission and gravitational redshift () of RBS 1223.
7 pages, 7 figures, Astronomy and Astrophysics accepted
References in corpus (13)
- The strongest cosmic magnets: Soft Gamma-ray Repeaters and Anomalous X-ray Pulsars
- Constraints on neutron star radii based on chiral effective field theory interactions
- The Magnificent Seven: Magnetic fields and surface temperature distributions
- Pulse profiles of millisecond pulsars and their Fourier amplitudes
- 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
- Model X-ray Spectra of Magnetic Neutron Stars with Hydrogen Atmospheres
- Modelling mid-Z element atmospheres for strongly-magnetized neutron stars
- The complex X-ray spectrum of the isolated neutron star RBS1223
- 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
- XMM-Newton RGS spectrum of RX J0720.4-3125: An absorption feature at 0.57 keV
- Radiative properties of highly magnetized isolated neutron star surfaces and approximate treatment of absorption features in their spectra
Cited by in corpus (37)
- The Nuclear Equation of State and Neutron Star Masses
- Equation of state and neutron star properties constrained by nuclear physics and observation
- Maximal neutron star mass and the resolution of hyperon puzzle in modified gravity
- Cyclotron lines in highly magnetized neutron stars
- Numerical relativity simulations of neutron star merger remnants using conservative mesh refinement
- Upper Limit on the QCD Axion Mass from Isolated Neutron Star Cooling
- Thermal luminosities of cooling neutron stars
- Atmospheres and radiating surfaces of neutron stars
- On the compactness of the isolated neutron star RX J0720.4-3125
- Axion Emission Can Explain a New Hard -ray Excess from Nearby Isolated Neutron Stars
- From neutron stars to quark stars in mimetic gravity
- Spectral monitoring of RX J1856.5-3754 with XMM-Newton. Analysis of EPIC-pn data
- Polarized thermal emission from X-ray Dim Isolated Neutron Stars: the case of RX J1856.5-3754
- Neutron stars - thermal emitters
- Heat blanketing envelopes of neutron stars
- Absorption Features in the X-ray Spectrum of an Ordinary Radio Pulsar
- Narrow phase-dependent features in X-ray Dim Isolated Neutron Stars: a new detection and upper limits
- Measuring the basic parameters of neutron stars using model atmospheres
- Radiative properties of magnetic neutron stars with metallic surfaces and thin atmospheres
- Spectral features in isolated neutron stars induced by inhomogeneous surface temperatures
- XMM-Newton reveals a candidate period for the spin of the "Magnificent Seven" neutron star RX J1605.3+3249
- X-ray Emission from Isolated Neutron Stars revisited: 3D magnetothermal simulations
- Hard X-ray Excess from the Magnificent Seven Neutron Stars
- Soft nuclear equation-of-state from heavy-ion data and implications for compact stars
- Long-term evolution of dim isolated neutron stars
- A deep XMM-Newton look on the thermally emitting isolated neutron star RX J1605.3+3249
- A joint NICER and XMM-Newton view of the "Magnificent" thermally emitting X-ray Isolated Neutron Star RX J1605.3+3249
- XMM-Newton observations of PSR J0726-2612, a radio-loud XDINS
- Universal detection of high-temperature emission in X-ray Isolated Neutron Stars
- The peculiar isolated neutron star in the Carina Nebula - Deep XMM-Newton and ESO-VLT observations of 2XMM J104608.7-594306
- Polarized Radiation Transfer in Neutron Star Surface Layers
- Optical excess of dim isolated neutron stars
- Photon-axion mixing in thermal emission of isolated neutron stars
- Refinement of the timing-based estimator of pulsar magnetic fields
- Two-blackbody portraits of radiation from magnetized neutron stars
- Constraints on the Equation-of-State of neutron stars from nearby neutron star observations
- Towards constraining axions with polarimetric observations of the isolated neutron star RX J1856.5-3754