Spine-sheath layer radiative interplay in subparsec-scale jets and the TeV emission from M87
arXiv:0801.0593 · doi:10.1111/j.1745-3933.2008.00441.x
Abstract
Simple one-zone homogeneous synchrotron self-Compton models have severe difficulties in explaining the TeV emission observed in the radiogalaxy M87. Also the site of the TeV emission region is uncertain: it could be the unresolved jet close to the nucleus, analogously to what proposed for blazars, or an active knot, called HST-1, tens of parsec away. We explore the possibility that the TeV emission of M87 is produced in the misaligned subpc scale jet. We base our modelling on a structured jet, with a fast spine surrounded by a slower layer. In this context the main site responsible for the emission of the TeV radiation is the layer, while the (debeamed) spine accounts for the emission from the radio to the GeV band: therefore we expect a more complex correlation with the TeV component than that expected in one-zone scenarios, in which both components are produced by the same region. Observed from small angles, the spine would dominate the emission, with an overall Spectral Energy Distribution close to those of BL Lac objects with a synchrotron peak located at low energy (LBLs).
5 pages, 2 figures. Accepted for publication in MNRAS Letters
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Cited by in corpus (5)
- Synchrotron Self-Compton Analysis of TeV X-ray Selected BL Lacertae Objects
- Rapid variability in TeV blazars: the case of PKS 2155-304
- Observation of gamma-ray emission from the galaxy M87 above 250 GeV with VERITAS
- Discovery of a very high energy gamma-ray signal from the 3C 66A/B region
- 3C66B as a TeV radiogalaxy