2010MNRAS.401.1255J


Query : 2010MNRAS.401.1255J

2010MNRAS.401.1255J - Mon. Not. R. Astron. Soc., 401, 1255-1263 (2010/January-2)

Following the 2008 outburst decay of the black hole candidate H 1743-322in X-ray and radio.

JONKER P.G., MILLER-JONES J., HOMAN J., GALLO E., RUPEN M., TOMSICK J., FENDER R.P., KAARET P., STEEGHS D.T.H., TORRES M.A.P., WIJNANDS R., MARKOFF S. and LEWIN W.H.G.

Abstract (from CDS):

In this paper, we report on radio (Very Large Array and Austrialian Telescope Compact Array) and X-ray (RXTE, Chandra and Swift) observations of the outburst decay of the transient black hole candidate H 1743-322in early 2008. We find that the X-ray light curve followed an exponential decay, levelling off towards its quiescent level. The exponential decay time-scale is ~4 days and the quiescent flux corresponds to a luminosity of erg/s. This together with the relation between quiescent X-ray luminosity and orbital period reported in the literature suggests that H 1743-322 has an orbital period longer than ~10 h. Both the radio and X-ray light curve show evidence for flares. The radio-X-ray correlation can be well described by a power-law with index ~0.18. This is much lower than the index of ~0.6-0.7 found for the decay of several black hole transients before. The radio spectral index measured during one of the radio flares while the source is in the low-hard state is -0.5±0.15, which indicates that the radio emission is optically thin. This is unlike what has been found before in black hole sources in the low-hard state. We attribute the radio flares and the low index for the radio-X-ray correlation to the presence of shocks downstream the jet flow, triggered by ejection events earlier in the outburst. We find no evidence for a change in X-ray power-law spectral index during the decay, although the relatively high extinction of NH~ 2.3 x 1022/cm2 limits the detected number of soft photons and thus the accuracy of the spectral fits.

Abstract Copyright: © 2009 The Authors. Journal compilation © 2009 RAS

Journal keyword(s): accretion, accretion discs - binaries - stars: individual: H 1743-322 - X-rays: binaries

Simbad objects: 14

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Number of rows : 14
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 1A 0620-00 HXB 06 22 44.5423857312 -00 20 44.290460544 10.60 11.40 11.2     K3V-K7V 1113 0
2 V* GU Mus HXB 11 26 26.5961559600 -68 40 32.877752952           K3V-K7V 715 1
3 3C 286 Sy1 13 31 08.2883506368 +30 30 32.960091564   17.51 17.25     ~ 4341 2
4 V* BR Cir HXB 15 20 40.8532547060 -57 10 00.206639033   21.4 21.4     ~ 781 1
5 V* V381 Nor HXB 15 50 58.6637920704 -56 28 35.258385000   17.95 16.6     K3III 1173 0
6 [GHJ2008] 3 HXB 16 50 00.980 -49 57 43.60     11.89     K4V 398 0
7 V* V821 Ara HXB 17 02 49.3876391280 -48 47 23.087954544 16.20 16.30 15.5     ~ 2079 0
8 QSO J1744-3116 Bla 17 44 23.57824 -31 16 36.2943           ~ 158 1
9 NAME XTE J17464-3213 LXB 17 46 15.59637 -32 14 00.8600           ~ 745 0
10 V* V4134 Sgr LXB 17 58 40.0 -33 48 27   19.20 18.5     ~ 178 0
11 [KRL2007b] 353 HXB 19 08 53.080 +09 23 04.84     15.80     ~ 113 0
12 SS 433 HXB 19 11 49.5647697480 +04 58 57.827127648   16.854 14.643     A3/7I 2124 4
13 V* V404 Cyg HXB 20 24 03.8254458776 +33 52 01.962185735           G9/K0III/V 1277 0
14 NAME Galactic Bulge reg ~ ~           ~ 4299 0

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