Modeling the Broadband Spectral Energy Distribution of the Microquasars XTE J 1550 – 564 and H 1743 – 322
نویسندگان
چکیده
We report results from a systematic study of the spectral energy distribution (SED) and spectral evolution of XTE J1550–564 and H 1743–322 in outburst. The jets of both sources have been directly imaged at both radio and X-ray frequencies, which makes it possible to constrain the spectrum of the radiating electrons in the jets. We modelled the observed SEDs of the jet ‘blobs’ with synchrotron emission alone and with synchrotron emission plus inverse Compton scattering. The results favor a pure synchrotron origin of the observed jet emission. Moreover, we found evidence that the shape of the electron spectral distribution is similar for all jet ‘blobs’ seen. Assuming that this is the case for the jet as a whole, we then applied the synchrotron model to the radio spectrum of the total emission and extrapolated the results to higher frequencies. In spite of significant degeneracy in the fits, it seems clear that, while the synchrotron radiation from the jets can account for nearly 100% of the measured radio fluxes, it contributes little to the observed X-ray emission, when the source is relatively bright. In this case, the X-ray emission is most likely dominated by emission from the accretion flows. When the source becomes fainter, however, the jet emission becomes more important, even dominant, at X-ray energies. We also examined the spectral properties of the sources during outbursts and the correlation between the observed radio and X-ray variabilities. The implication of the results is discussed.
منابع مشابه
On the origin of black hole X - ray emission in quiescence : Chandra observations of XTE J 1550 − 564 and H 1743 −
We report the results of observations of the black hole binaries XTE J1550−564 and H 1743−322 in their quiescent state using the Chandra X-ray Observatory. Both sources are detected at their faintest level of X-ray emission ever observed with a 0.5–10 keV unabsorbed luminosity of 2 × 10 32 (d/5 kpc) 2 erg s −1 for XTE J1550−564 and 9 × 10 31 (d/8 kpc) 2 erg s −1 for H 1743−322. These luminositi...
متن کاملLarge Scale Cavities Surrounding Microquasars Inferred from Evolution of Their Relativistic Jets
The black hole X-ray transient XTE J1550-564 has undergone a strong outburst in 1998 and two relativistic X-ray jets have been detected years later with the Chandra X-ray observatory; the eastern jet was found previously to have decelerated after its first detection. Here we report a full analysis of the evolution of the western jet; significant deceleration is also detected in the western side...
متن کاملToward Understanding the Spectral Energy Distribution of Microquasars
We report results from a systematic study of the spectral energy distribution (SED) of XTE J1550–564 and its evolution during outbursts. The work is part of an on-going effort to understand the SED of microquasars in general. The main objectives include: 1) assessing the roles of jets and accretion flows; 2) re-examining spectral states, state transitions, and spectral hysteresis; and 3) disent...
متن کاملEvolution of relativistic jets from XTE J1550-564 and the environment of microquasars
Two relativistic X-ray jets have been detected with the Chandra X-ray observatory in the black hole X-ray transient XTE J1550-564. We report a full analysis of the evolution of the two jets with a gamma-ray burst external shock model. A plausible scenario suggests a cavity outside the central source and the jets first travelled with constant velocity and then are slowed down by the interactions...
متن کاملJets and environment of microquasars
Two relativistic X-ray jets have been detected with the Chandra X-ray observatory from the black hole X-ray transient XTE J1550-564. We report a full analysis of the evolution of the two jets with a gamma-ray burst external shock model. A plausible scenario suggests a cavity outside the central source and the jets first travelled with constant velocity and then are slowed down by the interactio...
متن کامل