On the Asymmetries of Extended X-ray Emission from Planetary Nebulae
arXiv:astro-ph/0202139 · doi:10.1086/344363
Abstract
Chandra X-ray Observatory (CXO) images have revealed that the X-ray emitting regions of the molecule-rich young planetary nebulae (PNs) BD+30 3639 (BD+30) and NGC 7027 are much more asymmetric than their optical nebulosities. To evaluate the potential origins of these X-ray asymmetries, we analyze X-ray images of BD+30, NGC 7027, and another planetary nebula resolved by CXO, NGC 6543, within specific energy bands. Image resolution has been optimized by sub-pixel repositioning of individual X-ray events. The resulting subarcsecond-resolution images reveal that the soft (E < 0.7 keV) X-ray emission from BD+30 is more uniform than the harder emission, which is largely confined to the eastern rim of the optical nebula. In contrast, soft X-rays from NGC 7027 are highly localized and this PN is more axially symmetric in harder emission. The broad-band X-ray morphologies of BD+30 and NGC 7027 are highly anticorrelated with their distributions of visual extinction, as determined from high-resolution, space- and ground-based optical and infrared imaging. Hence, it is likely that the observed X-ray asymmetries of these nebulae are due in large part to the effects of nonuniform intranebular extinction. However, the energy-dependent X-ray structures in both nebulae and in NGC 6543 -- which is by far the least dusty and molecule-rich of the three PNs, and displays very uniform intranebular extinction -- suggests that other mechanisms, such as the action of collimated outflows and heat conduction, are also important in determining the detailed X-ray morphologies of young planetary nebulae.
33 pages, 12 figures; to appear in the Astrophysical Journal
References in corpus (9)
- Chandra Reveals the X-ray Glint in the Cat's Eye
- Discovery of Extended X-ray Emission from the Planetary Nebula NGC 7027 by the Chandra X-ray Observatory
- Improvement of the Spatial Resolution of the ACIS Using Split Pixel Events
- The Enigmatic X-ray Point Sources at the Central Stars of NGC 6543 and NGC 7293
- Diffuse X-ray emission from the planetary nebula NGC 7009
- On the Luminosities and Temperatures of Extended X-ray Emission from Planetary Nebulae
- Magnetic Collimation in PNe
- Variable H-alpha Line Emission from the Central Star of the Helix Nebula
- X-Ray Emission from Central Binary Systems of Planetary Nebulae
Cited by in corpus (20)
- The Chandra X-ray Survey of Planetary Nebulae (ChanPlaNS): Probing Binarity, Magnetic Fields, and Wind Collisions
- A Compact X-ray Source and Possible X-ray Jets within the Planetary Nebula Menzel 3
- A Deep Chandra ACIS Study of NGC 4151. I. the X-ray Morphology of the 3 kpc-diameter Circum-nuclear Region and Relation to the Cold Interstellar Medium
- Refining Chandra/ACIS Subpixel Event Repositioning Using a Backside Illuminated CCD Model
- On the Luminosities and Temperatures of Extended X-ray Emission from Planetary Nebulae
- XMM-Newton Detection of Hot Gas in the Eskimo Nebula: Shocked Stellar Wind or Collimated Outflows?
- The X-Ray Spectrum of a Planetary Nebula at High Resolution: Chandra Gratings Spectroscopy of BD+30 3639
- X-ray Imaging of Planetary Nebulae with Wolf-Rayet-type Central Stars: Detection of the Hot Bubble in NGC 40
- Mz 3, a Multipolar Nebula in the Making
- Accreting White Dwarfs among the Planetary Nebulae Most Luminous in [O III]5007 Emission
- Abundance Anomalies in the X-ray Spectra of the Planetary Nebulae NGC 7027 and BD +30 363
- Panchromatic HST/WFC3 Imaging Studies of Young, Rapidly Evolving Planetary Nebulae. II. NGC 7027
- Dissecting the X-ray Emission in the Young Planetary Nebula NGC 7027
- Suzaku Reveals Helium-burning Products in the X-ray Emitting Planetary Nebula BD+303639
- Dust Extinction in Compact Planetary Nebulae
- X-ray photodesorption and proton destruction in protoplanetary disks: pyrimidine
- Mass-Loaded Flows
- Spitzer observations of Bow Shocks and Outflows in RCW 38
- Hot bubbles of planetary nebulae with hydrogen-deficient winds - II. Analytical approximations with application to BD+303639
- Iron depletion in the hot bubbles in planetary nebulae