A Chandra observation of the neutron star X-ray transient and eclipsing binary MXB 1659-29 in quiescence
arXiv:astro-ph/0207094 · doi:10.1086/377122
Abstract
After almost 2.5 years of actively accreting, the neutron star X-ray transient and eclipsing binary MXB 1659-29 returned to quiescence in 2001 September. We report on a Chandra observation of this source taken a little over a month after this transition. The source was detected at an unabsorbed 0.5-10 keV flux of only (2.7 - 3.6) x 10^{-13} ergs/s/cm/cm, which implies a 0.5-10 keV X-ray luminosity of approximately (3.2 - 4.3) x 10^{33} (d/10 kpc)^2 erg/s, with d the distance to the source in kpc. Its spectrum had a thermal shape and could be well fitted by either a blackbody with a temperature kT of 0.3 keV or a neutron star atmosphere model with a kT of ~0.1 keV. The luminosity and spectral shape of MXB 1659-29 are very similar to those observed of the other neutron star X-ray transients when they are in their quiescent state. The source was variable during our observation, exhibiting a complete eclipse of the inner part of the system by the companion star. Dipping behavior was observed before the eclipse, likely due to obscuration by an extended feature in the outer part of a residual accretion disk. We discuss our observation in the context of the cooling neutron star model proposed to explain the quiescent properties of neutron star X-ray transients.
Accepted for publication in ApJ. It will be published in the 10 September 2003 issue
References in corpus (2)
Cited by in corpus (50)
- Mapping crustal heating with the cooling lightcurves of quasi-persistent transients
- Dense Matter in Compact Stars: Theoretical Developments and Observational Constraints
- Analysis of the Quiescent Low-Mass X-ray Binary Population in Galactic Globular Clusters
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- Cooling of the quasi-persistent neutron star X-ray transients KS 1731-260 and MXB 1659-29
- On the Lack of Thermal Emission from the Quiescent Black Hole XTE J1118+480: Evidence for the Event Horizon
- Cooling of Accretion-Heated Neutron Stars
- Cooling of the crust in the neutron star low-mass X-ray binary MXB 1659-29
- Testing the deep-crustal heating model using quiescent neutron-star very-faint X-ray transients and the possibility of partially accreted crusts in accreting neutron stars
- Quiescent X-ray emission from Cen X-4: a variable thermal component
- The Variable Quiescent X-ray Emission of the Neutron Star Transient XTE J1701-462
- Rapid neutrino cooling in the neutron star MXB 1659-29
- The hard quiescent spectrum of the neutron-star X-ray transient EXO 1745-248 in the globular cluster Terzan 5
- Monitoring Chandra observations of the quasi-persistent neutron-star X-ray transient MXB 1659-29 in quiescence: the cooling curve of the heated neutron-star crust
- Further X-ray observations of EXO 0748-676 in quiescence: evidence for a cooling neutron star crust
- A strong shallow heat source in the accreting neutron star MAXI J0556-332
- Rapid Cooling of the Neutron Star in the Quiescent Super-Eddington Transient XTE J1701-462
- Intermittent pulsations in an accretion-powered millisecond pulsar
- A strongly heated neutron star in the transient Z source MAXI J0556-332
- Surface Modes on Bursting Neutron Stars and X-ray Burst Oscillations
- Quiescent thermal emission from neutron stars in LMXBs
- Continued cooling of the crust in the neutron star low-mass X-ray binary KS 1731-260
- Low-Mass X-ray Binaries
- Late time cooling of neutron star transients and the physics of the inner crust
- A change in the quiescent X-ray spectrum of the neutron star low-mass X-ray binary MXB 1659-29
- Chandra and Swift observations of the quasi-persistent neutron star transient EXO 0748-676 back to quiescence
- Evidence for crust cooling in the transiently accreting 11-Hz X-ray pulsar in the globular cluster Terzan 5
- Neutron star crust cooling in KS 1731-260: the influence of accretion outburst variability on the crustal temperature evolution
- The faint neutron star soft X-ray transient SAX J1810.8-2609 in quiescence
- Crust structure and thermal evolution of neutron stars in soft X-ray transients
- The thermal state of KS 1731-260 after 14.5 years in quiescence
- INTEGRAL observations of the black hole candidate H 1743-322 in outburst
- A cold neutron star in the transient low-mass X-ray binary HETE J1900.1-2455 after 10 years of active accretion
- Consistent accretion-induced heating of the neutron-star crust in MXB 1659-29 during two different outbursts
- A possible solution of the puzzling variation of the orbital period of MXB 1659-298
- The quiescent X-ray properties of the accreting millisecond X-ray pulsar and eclipsing binary Swift J1749.4-2807
- Time-dependent, compositionally driven convection in the oceans of accreting neutron stars
- Thermal evolution of neutron stars in soft X-ray transients with thermodynamically consistent models of the accreted crust
- On obtaining neutron-star mass and radius constraints from quiescent low-mass X-ray binaries in the Galactic plane
- The accretion-heated crust of the transiently accreting 11 Hz X-ray pulsar in the globular cluster Terzan 5
- Extreme Quiescent Variability of the Transient Neutron Star Low-mass X-ray Binary EXO 1745-248 in Terzan 5
- Two new bursting neutron star low-mass X-ray binaries: Swift J185003.2-005627 and Swift J1922.7-1716
- Gapless neutron superfluidity can explain the late time cooling of transiently accreting neutron stars
- A possible new dipping X-ray source in the field of M31
- Consistency between deep crustal heating of strange stars in superbursters and soft X-ray transients
- Deep crustal heating by neutrinos from the surface of accreting neutron stars
- Gapless neutron superfluidity in the crust of the accreting neutron stars KS 1731-260 and MXB 1659-29
- Discovery of a second eclipsing, bursting neutron-star low-mass X-ray binary in the globular cluster Terzan 6
- Ocean g-modes on transient neutron stars
- A large population of neutron star low-mass X-ray binaries with long outburst recurrence time ?