Astronomy and Astrophysics – Astronomy
Scientific paper
Jan 1999
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1999stin...0100323z&link_type=abstract
Technical Report, NASA Goddard Space Flight Center Greenbelt, MD United States
Astronomy and Astrophysics
Astronomy
Accretion Disks, Black Holes (Astronomy), X Ray Binaries, X Ray Astronomy, Compton Effect, Inverse Scattering, Radiative Transfer, Coronas, X Ray Timing Explorer
Scientific paper
The results of spectral modeling of the data for a series of RXTE observations and four ASCA observations of GRO J1655-40 are presented. The thermal Comptonization model is used instead of the power-law model for the hard component of the two-component continuum spectra. The previously reported dramatic variations of the apparent inner disk radius of GRO J1655-40 during its outburst may be due to the inverse Compton scattering in the hot corona. A procedure is developed for making the radiative transfer correction to the fitting parameters from RXTE data and a more stable inner disk radius is obtained. A practical process of determining the color correction (hardening) factor from observational data is proposed and applied to the four ASCA observations of GRO J1655-40. We found that the color correction factor may vary significantly between different observations and the finally corrected physical inner disk radius remains reasonably stable over a large range of luminosity and spectral states.
Chen Wan
Cui Wei-Wei
Harmon Alan B.
Robinson Craig Richard
Sun Xuejun
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