Discovery of narrow X-ray absorption features from the low-mass X-ray binary X 1254-690 with XMM-Newton
arXiv:astro-ph/0306526 · doi:10.1051/0004-6361:20030975
Abstract
We report on two XMM-Newton observations of the low-mass X-ray binary X 1254-690. During an XMM-Newton observation of the low-mass X-ray binary in 2001 January a deep X-ray dip was seen while in a second observation one year later no dips were evident. The 0.5-10 keV EPIC spectra from both non-dipping intervals are very similar being modeled by a disk-blackbody and a power-law continuum with additional structure around 1 keV and narrow absorption features at 7.0 keV and 8.2 keV which are identified with the K alpha and K beta absorption lines of Fe XXVI. The low-energy structure may be modeled as a 175 eV (sigma) wide emission line at ~0.95 keV. This feature is probably the same structure that was modeled as an absorption edge in an earlier BeppoSAX observation. The absorption line properties show no obvious dependence on orbital phase and are similar in both observations suggesting that the occurrence of such features is not directly related to the presence of dipping activity. Narrow Fe absorption features have been observed from the two superluminal jet sources GRO J1655-40 and GRS 1915+105, and the four low-mass X-ray binaries GX 13+1, MXB 1658-298, X 1624-490 and X 1254-690. Since the latter 3 sources are dipping sources, which are systems viewed close to the accretion disk plane, and the two microquasars are thought to be viewed at an inclination of ~70 degrees, this suggests that these features are more prominent when viewed at high-inclination angles. This, together with the lack of any orbital dependence, implies a cylindrical geometry for the absorbing material.
7 pages, 9 postscript figures, accepted for publication in Astronomy and Astrophysics
Cited by in corpus (38)
- Simultaneous Chandra and RXTE Spectroscopy of the Microquasar H~1743-322: Clues to Disk Wind and Jet Formation from a Variable Ionized Outflow
- Spectral changes during dipping in low-mass X-ray binaries due to highly-ionized absorbers
- The Multi-INstrument Burst ARchive (MINBAR)
- Accretion disc atmospheres and winds in low-mass X-ray binaries
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- A highly-ionized absorber in the X-ray binary 4U 1323-62: a new explanation for the dipping phenomenon
- Evidence for enhanced persistent emission during sub-Eddington thermonuclear bursts
- A re--analysis of the iron line in the XMM-Newton data from the low/hard state in GX339--4
- A systematic analysis of the broad Fe Kalpha line in neutron star LMXBs with XMM-Newton
- ULX spectra revisited: Accreting, highly magnetized neutron stars as the engines of ultraluminous X-ray sources
- Suzaku discovery of iron absorption lines in outburst spectra of the X-ray transient 4U 1630-472
- X-ray and Optical Monitoring of State Transitions in MAXI J1820+070
- A superburst from 4U 1254-690
- Discovery of X-ray absorption features from the dipping low-mass X-ray binary XB 1916-053 with XMM-Newton
- A self-consistent approach to the hard and soft states of 4U 1705-44
- A connection between accretion state and in an accreting neutron star: black hole-like soft state winds?
- XMM-Newton observations reveal the disappearance of the wind in 4U 1630-47
- On the Fe K absorption - accretion state connection in the Galactic center neutron star X-ray binary AX J1745.6-2901
- XMM-Newton and INTEGRAL spectroscopy of the microquasar GRO J1655-40 during its 2005 outburst
- An optically-thick disk wind in GRO J1655-40?
- Accreting, highly magnetized neutron stars at the Eddington limit: A study of the 2016 outburst of SMC X-3
- Variations in the dip properties of the low-mass X-ray binary XB 1254-69 observed with XMM-Newton and INTEGRAL
- The Case for Massive, Evolving Winds in Black Hole X-ray Binaries
- A catalogue of unusually long thermonuclear bursts on neutron stars
- INTEGRAL and XMM-Newton Spectroscopy of GX 339-4 During Hard/Soft Intermediate and High/Soft States in the 2007 Outburst
- Chandra Observation of the Dipping Source XB 1254-690
- Chandra X-ray Observations of NGC 4258: Iron Absorption Lines from the Nucleus
- Detection of Highly Ionized Metal Absorption Lines in the Ultracompact X-ray Dipper 4U 1916-05
- IGR J17451-3022: a dipping and eclipsing low mass X-ray binary
- The origin of the tilted disk in the low mass X-ray binary GR Mus (XB 1254-690)
- Stratified wind from a super-Eddington X-ray binary is slower than expected
- Disk emission and atmospheric absorption lines in black hole candidate 4U 1630-472
- Spectral analysis of LMC X-2 with XMM/Newton: unveiling the emission process in the extragalactic Z-source
- Suzaku X-Ray Observation of the Dwarf Nova Z Camelopardalis at the Onset of an Optical Outburst
- Updating the orbital ephemeris of the dipping source XB 1254-690 and the distance to the source
- Accretion disc winds in X-ray binaries
- Discovery of X-ray absorption lines from the low-mass X-ray binaries 4U 1916-053 and X 1254-069 with XMM-Newton
- XMM-Newton and Chandra observations of the M31 globular cluster black hole candidate XB135: a heavyweight contender cut down to size