Time-variable non-thermal emission in the planetary nebula IRAS 15103-5754
arXiv:1504.04277 · doi:10.1088/0004-637X/806/1/105
Abstract
The beginning of photoionization marks the transition between the post-Asymptotic Giant Branch (post-AGB) and planetary nebula (PN) phases of stars with masses < 8 M_sun. This critical phase is difficult to observe, as it lasts only a few decades. The combination of jets and magnetic fields, the key agents of PNe shaping, could give rise to synchrotron emission, but this has never been observed before in any PNe, since free-free emission from the ionized gas is expected to dominate its radio spectrum. In this paper we report radio continuum observations taken with the Australia Telescope Compact Array between 1 and 46 GHz of the young PN IRAS 15103-5754. Our observations in 2010-2011 show non-thermal emission compatible with synchrotron emission from electrons accelerated at a shock with spectral index . However, in 2012, the spectral index is no longer compatible with synchrotron emission in these types of processes. Several hypothesis are discussed to explain this change. The more plausible ones are related to the presence of the newly photoionized region in this young PN: either energy loss of electrons due to Coulomb collisions with the plasma, or selective suppression of synchrotron radiation due to the Razin effect. We postulate that the observed flattening of non-thermal radio spectra could be a hallmark identifying the beginning of the PN phase.
To be published in The Astrophysical Journal. 9 pages, 3 figures
References in corpus (12)
- The Molonglo Galactic Plane Survey (MGPS-2): Compact Source Catalogue
- Low-Mass Binary Induced Outflows from Asymptotic Giant Branch Stars
- A Magnetized Jet from a Massive Protostar
- The RMS Survey: Radio observations of candidate massive YSOs in the southern hemisphere
- Magnetic fields in planetary nebulae and post-AGB nebulae
- The spatio-kinematical structure and distance of the pre-planetary nebula IRAS 19134+2131
- Astrophysical Explosions Driven by a Rotating, Magnetized, Gravitating Sphere
- A centimetre-wave excess over free-free emission in planetary nebulae
- Diffusive Synchrotron Radiation from Pulsar Wind Nebulae
- Radio observations of the planetary nebula around the OH/IR Star OH354.88-0.54 (V1018 Sco)
- The first "water fountain" collimated outflow in a planetary nebula
- Radio continuum properties of young planetary nebulae