XMM-Newton observation of the brightest X-ray flare detected so far from Sgr A
D. Porquet, Peter Predehl, Bernd Aschenbach, N. Grosso, Andrea Goldwurm, P. Goldoni, R. S. Warwick, Anne Decourchelle
Abstract
D. Porquet, Peter Predehl, Bernd Aschenbach, N. Grosso, Andrea Goldwurm, P. Goldoni, R. S. Warwick, Anne Decourchelle
Abstract
We report the high S/N observation on October 3, 2002 with XMM-Newton of the brightest X-ray flare detected so far from Sgr A* with a duration shorter than one hour (~2.7 ks). The light curve is almost symmetrical with respect to the peak flare, and no significant difference between the soft and hard X-ray range is detected. The overall flare spectrum is well represented by an absorbed power-law with a soft photon spectral index of $\\Gamma =2.5 \\pm0.3$, and a peak 2-10 keV luminosity of 3.6 $^{+0.3}_{-0.4}\\times 10 ^{35}$ erg s -1, i.e. a factor 160 higher than the Sgr A* quiescent value. No significant spectral change during the flare is observed. This X-ray flare is very different from other bright flares reported so far: it is much brighter and softer. The present accurate determination of the flare characteristics challenge the current interpretation of the physical processes occuring inside the very close environment of Sgr A* by bringing very strong constraints for the theoretical flare models.
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We report the high S/N observation on October 3, 2002 with XMM-Newton of the brightest X-ray flare detected so far from Sgr A* with a duration shorter than one hour (~2.7 ks). The light curve is almost symmetrical with respect to the peak flare, and no significant difference between the soft and hard X-ray range is detected. The overall flare spectrum is well represented by an absorbed power-law with a soft photon spectral index of $\\Gamma =2.5 \\pm0.3$, and a peak 2-10 keV luminosity of 3.6 $^{+0.3}_{-0.4}\\times 10 ^{35}$ erg s -1, i.e. a factor 160 higher than the Sgr A* quiescent value. No significant spectral change during the flare is observed. This X-ray flare is very different from other bright flares reported so far: it is much brighter and softer. The present accurate determination of the flare characteristics challenge the current interpretation of the physical processes occuring inside the very close environment of Sgr A* by bringing very strong constraints for the theoretical flare models.
Key concepts: Flare, Physics, Astrophysics, Luminosity, Light curve, Spectral index, X-ray, Spectral shape analysis