On fast X-ray rotators with long-term periodicities

The support of previous SAS 3 spacecraft observations by new data gathered by the Monitor Proportional Counter aboard the HEAO 2 spacecraft indicates that the pulse period history of the 13.5 sec-pulsing X-ray source LMC X-4 is consistent with standard accretion and torque models only if LMC X-4 is...

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Veröffentlicht in:Astrophys. J.; (United States) 1985-03, Vol.290 (2), p.487-495
Hauptverfasser: Naranan, S., Elsner, R. F., Darbro, W., Ramsey, B. D., Leahy, D. A., Weisskopf, M. C., Williams, A. C., Hardee, P. E., Sutherland, P. G., Grindlay, J. E.
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Sprache:eng
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Zusammenfassung:The support of previous SAS 3 spacecraft observations by new data gathered by the Monitor Proportional Counter aboard the HEAO 2 spacecraft indicates that the pulse period history of the 13.5 sec-pulsing X-ray source LMC X-4 is consistent with standard accretion and torque models only if LMC X-4 is a fast rotator for which the accretion torques nearly cancel. This result leads to a neutron star magnetic field strength estimate of about 1.2 x 10 to the 13th G. Strong evidence is noted for Her X-1's status as a fast rotator, while SMC X-1 is probably an intermediate-to-fast rotator. In the context of slaved disk models for these objects, it is noted that the precession periods expected for the companion stars are significantly longer than the observed 1-2 month time scales; slaved disk models are thereby undermined.
ISSN:0004-637X
1538-4357
DOI:10.1086/163006