2009A&A...502..231Z


Query : 2009A&A...502..231Z

2009A&A...502..231Z - Astronomy and Astrophysics, volume 502, 231-237 (2009/7-4)

Outbursts from IGR J17473-2721.

ZHANG S., CHEN Y.-P., WANG J.-M., TORRES D.F. and LI T.-P.

Abstract (from CDS):

IGR J17473-2721 was discovered by INTEGRAL as a neutron star low mass X-ray binary. To date, two outbursts have been detected in X-rays by RXTE/ASM and SWIFT: the one occurring in 2005 was weak and was characterized by a low/hard state spectrum; the one of March 2008 was strong and showed a 6-step evolution in its flux. We investigate their evolution, emphasizing the later outburst. We analyzed all available observations carried out by RXTE on IGR J17473-2721 during its later outburst. We analyzed as well all the available SWIFT/BAT data on this source. The flux of the latter outburst rose in ∼one month and then kept roughly constant for the following ∼two months. During this time period, the source was in a low/hard state. The source moved to a high/soft state within the following three days, accompanied by the occurrence of an additional outburst at soft X-rays and the end of the preceding outburst in hard X-rays. During the decay of this soft outburst, the source went back to a low/hard state within 6 days, with a luminosity 4 times lower than the first transition. This shows a full cycle of the hysteresis in transition between the hard and the soft states. The fact that the flux remained roughly constant for ∼two months at times prior to the spectral transition to a high/soft state might be regarded as the result of balancing the evaporation of the inner disk and the inward accretion flow, in a model in which the state transition is determined by the mass flow rate. Such a balance might be broken via an additional mass flow accreting onto the inner disk, which lightens the extra soft outburst and causes the state transition. However, the possibility of an origin of the emission from the jet during this time period cannot be excluded. The spectral analysis suggests an inclined XRB system for IGR J17473-2721. Such a long-lived preceding low/hard state makes IGR J17473-2721 resemble the behavior of outbursts seen in black hole X-ray binaries like GX 339-4.

Abstract Copyright:

Journal keyword(s): X-rays: individual: IGR J17473-2721

Simbad objects: 10

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Number of rows : 10
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 V* V1037 Cas LXB 00 29 03.06 +59 34 19.0           ~ 267 1
2 V* V518 Per HXB 04 21 42.7227473352 +32 54 26.939156184 13.00 13.50 13.2     M4.5V 651 1
3 V* KV UMa HXB 11 18 10.7930420496 +48 02 12.314730120     12.25     K5V-M1V 822 0
4 V* BW Cir HXB 13 58 09.700 -64 44 05.80 17.90 18.00 16.9     ~ 238 1
5 V* QX Nor LXB 16 12 43.0 -52 25 23           ~ 905 1
6 V* V821 Ara HXB 17 02 49.3876391280 -48 47 23.087954544 16.20 16.30 15.5     ~ 2079 0
7 NAME Galactic Center reg 17 45 39.60213 -29 00 22.0000           ~ 14417 0
8 [KRL2007b] 277 LXB 17 47 18.06 -27 20 38.9           ~ 78 0
9 SWIFT J1756.9-2508 LXB 17 56 57.35 -25 06 27.8           ~ 107 0
10 X Aql X-1 LXB 19 11 16.0571313336 +00 35 05.868232692           ~ 1136 1

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