The Halos of Planetary Nebulae in the Mid-Infrared: Evidence for Interaction with the Interstellar Medium
arXiv:0909.1839 · doi:10.1111/j.1365-2966.2009.15485.x
Abstract
The motion of planetary nebulae (PNe) through the interstellar medium (ISM) is thought to lead to a variety of observational consequences, including the formation of bright rims; deformation and fragmentation of the shells; and a shift of the central stars away from the geometric centres of the envelopes. These and other characteristics have been noted through imaging in the visual wavelength regime. We report further observations of such shells taken in the mid-infrared (MIR), acquired through programs of IRAC imaging undertaken using the Spitzer Space Telescope (SST). NGC 2440 and NGC 6629 are shown to possess likely interacting halos, together with ram-pressure stripped material to one side of their shells. Similarly, the outer halos of NGC 3242 and NGC 6772 appear to have been fragmented through Rayleigh-Taylor (RT) instabilities, leading to a possible flow of ISM material towards the inner portions of their envelopes. If this interpretation is correct, then it would suggest that NGC 3242 is moving towards the NE; a suggestion which is also supported through the presence of a 60 microns tail extending in the opposite direction, and curved bands of H-alpha emission in the direction of motion - components which may arise through RT instabilities in the magnetized ISM.
14 pages, 9 figures, Accepted for publication in MNRAS. 42 pages in arXiv
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Cited by in corpus (9)
- The Halo and Rings of the Planetary Nebula NGC 40 in the Mid-Infrared
- NGC 6309, a Planetary Nebula that Shifted from Round to Multipolar
- The interaction of the halo around the butterfly planetary nebula NGC650-1 with the interstellar medium
- MIPSGAL 24 μm Observations of Galactic Planetary Nebulae
- Spitzer Mid-Infrared Observations of Seven Bipolar Planetary Nebulae
- Interacting planetary nebulae III: Verification and galactic population based on the measurements of Gaia EDR3
- Observations of the planetary nebula RWT 152 with OSIRIS/GTC
- Discovery of Extended Structures around Two Evolved Planetary Nebulae M 2-55 and Abell 2
- Low-ionization structures in planetary nebulae -- IV. The molecular hydrogen counterpart