SIMBAD references

2001ApJ...548..883I - Astrophys. J., 548, 883-888 (2001/February-3)

A hard tail in the broadband spectrum of the dipper XB 1254-690.

IARIA R., DI SALVO T., BURDERI L. and ROBBA N.R.

Abstract (from CDS):

We report on the results of spectral analysis of the dipping source XB 1254-690 observed by the BeppoSAX satellite. We find that the X-ray dips are not present during the BeppoSAX observation, in line with recent RXTE results. The broadband (0.1-100 keV) energy spectrum is well fitted by a three-component model consisting of a multicolor disk blackbody with an inner disk temperature of ∼0.85 keV, a Comptonized spectrum with an electron temperature of ∼2 keV, and bremsstrahlung at a temperature of ∼20 keV. Adopting a distance of 10 kpc and taking into account a spectral hardening factor of ∼1.7 (because of electron scattering which modifies the blackbody spectrum emitted by the disk), we estimated that the inner disk radius is Rincosi1/2∼11 km, where i is the inclination angle of the system with respect to the line of sight. The Comptonized component could originate in a spherical corona or boundary layer, surrounding the neutron star, with optical depth ∼19. The bremsstrahlung emission, contributing ∼4% of the total luminosity, probably originates in an extended accretion disk corona with radius ∼1010 cm. In this scenario, we calculated that the optical depth of this region is ∼0.71 and its mean electron density is Ne∼2.7x1014 cm–3. This last component might also be present in other low-mass X-ray binaries, but, because of its low intrinsic luminosity, it is not easily observable. We also find an absorption edge at ∼1.27 keV with an optical depth of ∼0.15. Its energy could correspond to the L edge of Fe XVII or K edge of Ne X or neutral Mg.

Abstract Copyright:

Journal keyword(s): Accretion, Accretion Disks - Stars: Individual: Alphanumeric: XB 1254-690 - Stars: Neutron - X-Rays: General - X-Rays: Stars

Simbad objects: 3

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