Burn Out or Fade Away? On the X-ray and Magnetic Death of Intermediate Mass Stars
arXiv:1403.6871 · doi:10.1088/0004-637X/786/2/136
Abstract
The nature of the mechanisms apparently driving X-rays from intermediate mass stars lacking strong convection zones or massive winds remains poorly understood, and the possible role of hidden, lower mass close companions is still unclear. A 20ks Chandra HRC-I observation of HR 4796A, an 8 Myr old main sequence A0 star devoid of close stellar companions, has been used to search for a signature or remnant of magnetic activity from the Herbig Ae phase. X-rays were not detected and the X-ray luminosity upper limit was L_X =< 1.3x10^27 erg/s. The result is discussed in the context of various scenarios for generating magnetic activity, including rotational shear and subsurface convection. A dynamo driven by natal differential rotation is unlikely to produce observable X rays, chiefly because of the difficulty in getting the dissipated energy up to the surface of the star. A subsurface convection layer produced by the ionisation of helium could host a dynamo that should be effective throughout the main-sequence but can only produce X-ray luminosities of order 10^25 erg/s. This luminosity lies only moderately below the current detection limit for Vega. Our study supports the idea that X-ray production in Herbig Ae/Be stars is linked largely to the accretion process rather than the properties of the underlying star, and that early A stars generally decline in X-ray luminosity at least 100,000 fold in only a few million years.
Accepted for publication in the Astrophysical Journal
References in corpus (8)
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Cited by in corpus (6)
- Evolution of X-ray Activity in <25 Myr Old Pre-Main Sequence Stars
- Infrared Spectroscopy of HR 4796A's Bright Outer Cometary Ring + Tenuous Inner Hot Dust Cloud
- A Test of the Neutron Star Hypothesis for Fomalhaut b
- Chandra Characterization of X-ray Emission in the Young F-Star Binary System HD 113766
- Nearby Young Stars and Young Moving Groups
- Coronal and chromospheric emission in A-type stars