XMM-NEWTON MONITORING OF THE CLOSE PRE-MAIN-SEQUENCE BINARY AK SCO. EVIDENCE OF TIDE-DRIVEN FILLING OF THE INNER GAP IN THE CIRCUMBINARY DISK

被引:21
作者
Ines Gomez de Castro, Ana [1 ,2 ]
Lopez-Santiago, Javier [3 ]
Talavera, Antonio [4 ]
Sytov, A. Yu. [5 ]
Bisikalo, D. [5 ]
机构
[1] Univ Complutense, SD Astron & Geodesia, Fac CC Matemat, E-28040 Madrid, Spain
[2] Univ Complutense, Inst Matemat Interdisciplinar, Fac CC Matemat, E-28040 Madrid, Spain
[3] Univ Complutense, Dept Astrofis, Fac CC Fis, E-28040 Madrid, Spain
[4] European Space Astron Ctr, E-28691 Madrid, Spain
[5] Russian Acad Sci, Inst Astron, Moscow 109017, Russia
关键词
binaries: spectroscopic; magnetic fields; stars: pre-main sequence; T-TAURI STARS; X-RAY-EMISSION; SYSTEM KH 15D; WAVELENGTH DEPENDENCE; ACCRETION SHOCKS; MG-II; SCORPII; POLARIZATION; SIMULATIONS; EXTINCTION;
D O I
10.1088/0004-637X/766/1/62
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
AK Sco stands out among pre-main-sequence binaries because of its prominent ultraviolet excess, the high eccentricity of its orbit, and the strong tides driven by it. AK Sco consists of two F5-type stars that get as close as 11 R-* at periastron passage. The presence of a dense (n(e) similar to 10(11) cm(-3)) extended envelope has been unveiled recently. In this article, we report the results from an XMM-Newton-based monitoring of the system. We show that at periastron, X-ray and UV fluxes are enhanced by a factor of similar to 3 with respect to the apastron values. The X-ray radiation is produced in an optically thin plasma with T similar to 6.4 x 10(6) K and it is found that the N-H column density rises from 0.35 x 10(21) cm(-2) at periastron to 1.11 x 10(21) cm(-2) at apastron, in good agreement with previous polarimetric observations. The UV emission detected in the Optical Monitor band seems to be caused by the reprocessing of the high-energy magnetospheric radiation on the circumstellar material. Further evidence of the strong magnetospheric disturbances is provided by the detection of line broadening of 278.7 km s(-1) in the Nv line with Hubble Space Telescope/Space Telescope Imaging Spectrograph. Numerical simulations of the mass flow from the circumbinary disk to the components have been carried out. They provide a consistent scenario with which to interpret AK Sco observations. We show that the eccentric orbit acts like a gravitational piston. At apastron, matter is dragged efficiently from the inner disk border, filling the inner gap and producing accretion streams that end as ring-like structures around each component of the system. At periastron, the ring-like structures come into contact, leading to angular momentum loss, and thus producing an accretion outburst.
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页数:14
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