X-Ray Emission from Central Binary Systems of Planetary Nebulae
arXiv:astro-ph/0111266 · doi:10.1086/339580
Abstract
We study the conditions under which a main sequence binary companion to the central ionizing star of a planetary nebula (PN) might become magnetically active and thereby display strong X-ray luminosity. Since most PNe are older than few billion years, any main sequence companion will rotate too slowly to have magnetic activity and hence bright X-ray emission, unless it is spun-up. We demonstrate that if the orbital separation during the AGB phase of the PN progenitor is less than 30-60 AU, main sequence companions in the spectral type range F7 to M4 will accrete enough angular momentum from the AGB wind to rotate rapidly, become magnetically active, and exhibit strong X-ray luminosities. Lower mass M stars and brown dwarfs can also become magnetically active, but they should have small orbital separations and hence are less likely to survive the AGB phase of the progenitor. We estimate that 20-30 per cent of elliptical PNe and 30-50 per cent of bipolar PN are likely to have magnetically active companions which will reveal themselves in X-ray observations. Re-analysis of Chandra X-ray Observatory spectroscopy of the compact central source of NGC 7293 indicates that the emitting region of this object possesses abundance anomalies similar to those of coronally active main-sequence stars.
15 pages, Submitted to ApJ
References in corpus (8)
- Evidence for Accretion: High-Resolution X-ray Spectroscopy of the Classical T Tauri Star TW Hydrae
- X-ray emission from young stars in Taurus-Auriga-Perseus: Luminosity functions and the rotation-activity-age relation
- 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
- The Enigmatic X-ray Point Sources at the Central Stars of NGC 6543 and NGC 7293
- Collimated Fast Winds in Wide Binary Progenitors of Planetary Nebulae
- Massive Binary WR112 and Properties of Wolf-Rayet Dust
- Variable H-alpha Line Emission from the Central Star of the Helix Nebula
Cited by in corpus (17)
- The Chandra X-ray Survey of Planetary Nebulae (ChanPlaNS): Probing Binarity, Magnetic Fields, and Wind Collisions
- Energy and Angular Momentum Deposition During Common Envelope Evolution
- A Compact X-ray Source and Possible X-ray Jets within the Planetary Nebula Menzel 3
- The Chandra Planetary Nebulae Survey (ChanPlaNS): III. X-ray Emission from the Central Stars of Planetary Nebulae
- The Chandra Planetary Nebula Survey (ChanPlaNS). II. X-ray Emission from Compact Planetary Nebulae
- X-ray Emission from the Binary Central Stars of the Planetary Nebulae HFG 1, DS 1, and LoTr 5
- On the Luminosities and Temperatures of Extended X-ray Emission from Planetary Nebulae
- Magnetic Flares on Asymptotic Giant Branch Stars
- On the Asymmetries of Extended X-ray Emission from Planetary Nebulae
- Local Circumstellar Magnetic Fields Around Evolved Stars
- Magnetic Activity of the Cool Companion in Symbiotic Systems
- The X-ray source population of the globular cluster M15: Chandra high resolution imaging
- Strong Variable Ultraviolet Emission from Y Gem: Accretion Activity in an AGB Star with a Binary Companion?
- X-rays from the Mira AB Binary System
- Variable Hard X-ray Emission From the Central Star of the Eskimo Nebula
- An XMM-Newton view of Planetary Nebulae in the Small Magellanic Cloud. The X-ray luminous central star of SMP SMC 22
- A Chandra Study: Are Dwarf Carbon Stars Spun Up and Rejuvenated by Mass Transfer?