Published February 1, 1997 | Version Published
Journal Article Open

The ASCA X-Ray Spectrum of the Unusual Binary LSI +61°303

Abstract

The unusual Be binary LSI +61°303 was observed by the ASCA X-ray satellite twice during the 26 day orbital-outburst cycle. Here we present the results of the spectral analysis of the ASCA data. The emission spectrum can be characterized by an absorbed power law and is inconsistent with other single component models such as blackbody or hot plasma emission. The data show both flux and spectral variability between the two observations. The column density is determined for LSI 61°303 , and we put upper limits on Fe line emission and Fe absorption edge optical depth. The power-law index is similar to that seen for classical X-ray pulsars ; however, the low X-ray luminosity and the power-law emission in other wavebands indicate that the emission is not from an optically thick accretion column but rather synchrotron or inverse-Compton emission from relativistic particles. We argue that the sub-eV emission is synchrotron, the super-eV emission is inverse Compton and that the magnetic field in the emission region is a few hundred gauss.

Additional Information

© 1997 The American Astronomical Society. D. A. L. acknowledges support from the Natural Sciences and Engineering Research Council. F. A. H. acknowledges support from a Robert A. Millikan Research Fellowship.

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Identifiers

Eprint ID
52291
Resolver ID
CaltechAUTHORS:20141202-144057199

Funding

Natural Sciences and Engineering Research Council of Canada (NSERC)
Robert A. Millikan Fellowship

Dates

Created
2014-12-03
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Updated
2019-10-03
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Caltech Custom Metadata

Caltech groups
Space Radiation Laboratory
Other Numbering System Name
Space Radiation Laboratory
Other Numbering System Identifier
1997-42