On the Fe K absorption - accretion state connection in the Galactic center neutron star X-ray binary AX J1745.6-2901
arXiv:1409.3224 · doi:10.1093/mnras/stu1853
Abstract
AX J1745.6-2901 is a high-inclination (eclipsing) neutron star Low Mass X-ray Binary (LMXB) located less than ~1.5 arcmin from Sgr A*. Ongoing monitoring campaigns have targeted Sgr A* frequently and these observations also cover AX J1745.6-2901. We present here an X-ray analysis of AX J1745.6-2901 using a large dataset of 38 XMM-Newton observations, including eleven which caught AX J1745.6-2901 in outburst. Fe K absorption is clearly seen when AX J1745.6-2901 is in the soft state, but disappears during the hard state. The variability of these absorption features does not appear to be due to changes in the ionizing continuum. The small Kalpha/Kbeta ratio of the equivalent widths of the Fe xxv and Fe xxvi lines suggests that the column densities and turbulent velocities of the absorbing ionised plasma are in excess of N_H ~ 10^23 cm^-2 and v_turb >~ 500 km s^-1. These findings strongly support a connection between the wind (Fe K absorber) and the accretion state of the binary. These results reveal strong similarities between AX J1745.6-2901 and the eclipsing neutron star LMXB, EXO 0748-676, as well as with high-inclination black hole binaries, where winds (traced by the same Fe K absorption features) are observed only during the accretion-disc-dominated soft states, and disappear during the hard states characterised by jet emission.
Accepted for publication in MNRAS
References in corpus (14)
- X-ray Properties of Black-Hole Binaries
- The 2013 Release of Cloudy
- The Accretion Disk Wind in the Black Hole GRO J1655-40
- Evaluating Spectral Models and the X-ray States of Neutron-Star X-ray Transients
- On why the Iron K-shell absorption in AGN is not a signature of the local Warm/Hot Intergalactic Medium
- Spectrum Synthesis Modeling of the X-ray Spectrum of GRO J1655-40 Taken During the 2005 Outburst
- The variable X-ray spectrum of Markarian 766 - I. Principal components analysis
- The behavior of subluminous X-ray transients near the Galactic center as observed using the X-ray telescope aboard Swift
- Analysing the atolls: X-ray spectral transitions of accreting neutron stars
- Revealing accretion onto black holes: X-ray reflection throughout three outbursts of GX 339-4
- Timing and Flux Evolution of the Galactic Center Magnetar SGR J1745-2900
- The peculiar Galactic center neutron star X-ray binary XMM J174457-2850.3
- Properties of the ionised plasma in the vicinity of the neutron-star X-ray binary EXO 0748-676
- Long Term Wind-Driven X-Ray Spectral Variability of NGC 1365 with Swift
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- NuSTAR + XMM-Newton monitoring of the neutron star transient AX J1745.6-2901
- Simultaneous X-ray and optical spectroscopy of V404 Cygni supports the multi-phase nature of X-ray binary accretion disc winds
- Simultaneous Monitoring of X-ray and Radio Variability in Sagittarius A*
- Outflows and spectral evolution in the eclipsing AMXP SWIFT J1749.4-2807 with NICER, XMM-Newton and NuSTAR
- A variable magnetic disc wind in the black hole X-ray binary GRS 1915+105?
- Evidence of a non-conservative mass transfer in the ultra-compact X-ray source XB 1916-053
- Evolution of the disc atmosphere in the X-ray binary MXB 1659-298, during its 2015-2017 outburst
- Accretion disc winds in X-ray binaries
- X-ray and optical orbital modulation of EXO 0748-676: A co-variability study using XMM-Newton
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