Evidence for a Mid-Atomic-Number Atmosphere in the Neutron Star 1E1207.4-5209
arXiv:astro-ph/0207590 · doi:10.1086/344716
Abstract
Recently Sanwal et al. (2002) reported the first clear detection of absorption features in an isolated neutron star, 1E1207.4-5209. Remarkably their spectral modeling demonstrates that the atmosphere cannot be Hydrogen. They speculated that the neutron star atmosphere is indicative of ionized Helium in an ultra-strong (~1.5x10^{14} G) magnetic field. We have applied our recently developed atomic model (Mori & Hailey 2002) for strongly-magnetized neutron star atmospheres to this problem. We find that this model, along with some simp le atomic physics arguments, severely constrains the possible composition of the atmosphere. In particular we find that the absorption features are naturally associated with He-like Oxygen or Neon in a magnetic field of ~10^{12} G, comparable to the magnetic field derived from the spin parameters of the neutron star. This interpretation is consistent with the relative line strengths and widths and is robust. Our model predicts possible substructure in the spectral features, which has now been reported by XMM-Newton (Mereghetti et al. 2002). However we show the Mereghetti et al. claim that the atmosphere is Iron or some comparable high-Z element at ~ 10^{12} G is easily ruled out by the Chandra and XMM-Newton data.
5 pages, AASTeX, Revised version. Accepted for publication in ApJ Letters
References in corpus (2)
Cited by in corpus (31)
- The Physics of Neutron Stars
- Low Mass Neutron Stars and the Equation of State of Dense Matter
- Magnetars in the Metagalaxy: An Origin for Ultra High Energy Cosmic Rays in the Nearby Universe
- Surface Emission from Neutron Stars and Implications for the Physics of their Interiors
- Isolated neutron stars: Magnetic fields, distances, and spectra
- A Strong, Broad Absorption Feature in the X-ray Spectrum of the Nearby Neutron Star RX J1605.3+3249
- The isolated neutron star X-ray pulsars RX J0420.0-5022 and RX J0806.4-4123: new X-ray and optical observations
- Modelling mid-Z element atmospheres for strongly-magnetized neutron stars
- Pulse phase variations of the X-ray spectral features in the radio-quiet neutron star 1E 1207-5209
- Radiation from condensed surface of magnetic neutron stars
- XMM-Newton and VLT observations of the isolated neutron star 1E 1207.4-5209
- Precise Timing of the X-ray Pulsar 1E 1207.4-5209: A Steady Neutron Star Weakly Magnetized at Birth
- Atmospheres and Spectra of Strongly Magnetized Neutron Stars -- III. Partially Ionized Hydrogen Models
- Detection of pulsations and a spectral feature in the X-ray emission of the isolated neutron star 1RXS J214303.7+065419/RBS 1774
- Evolution of Young Neutron Star Envelopes
- Diffusive Nuclear Burning of Helium on Neutron Stars
- Diffusive Nuclear Burning on Neutron Star Envelopes
- Diffusive Nuclear Burning in Neutron Star Envelopes
- X-ray Timing of PSR J1852+0040 in Kesteven 79: Evidence of Neutron Stars Weakly Magnetized at Birth
- Variations in the spin period of the radio-quiet pulsar 1E 1207.4-5209
- Modeling the X-rays from the Central Compact Object PSR J1852+0040 in Kesteven 79: Evidence for a Strongly Magnetized Neutron Star
- Spectral Features in the Thermal Emission from Isolated Neutron Stars: Dependence on Magnetic Field Strengths
- Once-ionized helium in superstrong magnetic fields
- Detailed atmosphere modelling for the neutron star 1E1207.4-5209: Evidence of Oxygen/Neon atmosphere
- Proper Motion and Timing of Two Unusual Pulsars: Calvera and 1E 1207.4-5209
- Ionization and dissociation equilibrium in strongly-magnetized helium atmosphere
- Chandra X-Ray Observatory Observations of Neutron Stars: An Overview
- One-electron atomic-molecular ions containing Lithium in a strong magnetic field
- Evidence for a Binary Companion to the Central Compact Object 1E 1207.4-5209
- Six Years of Chandra Observations of Supernova Remnants
- Strange stars and the cosmological constant problem