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The infrared/X-ray correlation of GX 339-4: Probing hard X-ray emission in accreting black holes

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arxiv 0909.3283 v1 pith:7TC64NMB submitted 2009-09-17 astro-ph.HE

classification astro-ph.HE
keywords x-rayhardemissionstateopticalcorrelationcorrelationsfour
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GX 339-4 has been one of the key sources for unravelling the accretion ejection coupling in accreting stellar mass black holes. After a long period of quiescence between 1999 and 2002, GX 339-4 underwent a series of 4 outbursts that have been intensively observed by many ground based observatories [radio, infrared(IR), optical] and satellites (X-rays). Here, we present results of these broad-band observational campaigns, focusing on the optical-IR (OIR)/X-ray flux correlations over the four outbursts. We found tight OIR/X-ray correlations over four decades with the presence of a break in the IR/X-ray correlation in the hard state. This correlation is the same for all four outbursts. This can be interpreted in a consistent way by considering a synchrotron self-Compton origin of the X-rays in which the break frequency varies between the optically thick and thin regime of the jet spectrum. We also highlight the similarities and differences between optical/X-ray and IR/X-ray correlations which suggest a jet origin of the near-IR emission in the hard state while the optical is more likely dominated by the blackbody emission of the accretion disc in both hard and soft state. However we find a non negligible contribution of 40 per cent of the jet emission in the V-band during the hard state. We finally concentrate on a soft-to-hard state transition during the decay of the 2004 outburst by comparing the radio, IR, optical and hard X-rays light curves. It appears that unusual delays between the peak of emission in the different energy domains may provide some important constraints on jet formation scenario.

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  1. Black hole spectral states revealed in GRMHD simulations with texture memory accelerated cooling

    astro-ph.HE 2025-05 conditional novelty 5.0 of 10

    Using a texture-memory cooling table in GRMHD, the simulations show a hot two-temperature flow at low accretion rates and a truncated thin disk above about 1% Eddington.

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