Why Magnetic Fields Cannot be the Main Agent Shaping Planetary Nebulae
arXiv:astro-ph/0501647 · doi:10.1086/498829
Abstract
An increasing amount of literature reports the detection of magnetic fields in asymptotic giant branch (AGB) stars and in central stars of planetary nebulae (PNs). These detections lead to claims that the magnetic fields are the main agent shaping the PNs. In this paper, I examine the energy and angular momentum carried by magnetic fields expelled from AGB stars, as well as other physical phenomena that accompany the presence of large scale fields, such as those claimed in the literature. I show that a single star cannot supply the energy and angular momentum if the magnetic fields have the large coherent structure required to shape the circumstellar wind. Therefore, the structure of non-spherical planetary nebulae cannot be attributed to dynamically important large scale magnetic fields. I conclude that the observed magnetic fields around evolved stars can be understood by locally enhanced magnetic loops which can have a secondary role in the shaping of the PN. The primary role, I argue, rests with the presence of a companion.
PASP, 2006, in press. (This paper was rejected by MNRAS and ApJ; my criticism of the referee reports are in: Soker, N. astro-ph/0508525.)
References in corpus (10)
- Magnetic-Driven Winds from Post-AGB Stars: Solutions for High Speed Winds and Extreme Collimation
- A movie of a star: multi-epoch VLBA imaging of the SiO masers towards the Mira variable TX Cam
- The magnetic field around late-type stars revealed by the circumstellar H2O masers
- Indications of a Large Fraction of Spectroscopic Binaries Among Nuclei of Planetary Nebulae
- X-ray Outburst in Mira A
- Discovery of magnetic fields in central stars of planetary nebulae
- Magnetic activity in late-type giant stars: Numerical MHD simulations of non-linear dynamo action in Betelgeuse
- Simultaneous Production of Disk and Lobes: A Single-Wind MHD Model for the Eta Carinae Nebula
- Polarimetric observations of OH masers in proto-planetary nebulae
- The absence of jets in cataclysmic variable stars
Cited by in corpus (56)
- Common Envelope Evolution: Where we stand and how we can move forward
- Low-Mass Binary Induced Outflows from Asymptotic Giant Branch Stars
- Young Planetary Nebulae: Hubble Space Telescope Imaging and a New Morphological Classification System
- The impact of companions on stellar evolution
- Isolated vs. Common Envelope Dynamos in Planetary Nebula Progenitors
- (Sub)stellar companions shape the winds of evolved stars
- Binary central stars of PN discovered through photometric variability. I. What we know and what we would like to find out
- An Interacting Binary System Powers Precessing Outflows of an Evolved Star
- The binary fraction of planetary nebula central stars I. A high-precision, I-band excess search
- Identifying close binary central stars of PN with Kepler
- ETHOS 1: A high latitude planetary nebula with jets forged by a post common envelope binary central star
- Magnetic fields in planetary nebulae and post-AGB nebulae
- Discovery of close binary central stars in the planetary nebulae NGC 6326 and NGC 6778
- The Effect of Tides on the Population of PN from Interacting Binaries
- Search for surface magnetic fields in Mira stars. First detection in chi Cyg
- Proof of polar ejection fom the close-binary core of the planetary nebula Abell 63
- Shaping Planetary Nebulae by Light Jets
- The role of planets in shaping planetary nebulae
- Jet creation in post-AGB binaries: the circum-companion accretion disc around BD+46442
- Deciphering the bipolar planetary nebula Abell 14 with 3D ionization and morphological studies
- Observed Planetary Nebulae as Descendants of Interacting Binary Systems
- Multi-epoch imaging polarimetry of the SiO masers in the extended atmosphere of the Mira variable TX Cam
- Common Envelope Shaping of Planetary Nebulae. II. Magnetic Solutions and Self-Collimated Outflows
- The planetary nebula IC 4776 and its post-common-envelope binary central star
- HII Region Driven Galactic Bubbles and Their Relationship to the Galactic Magnetic Field
- The magnetic field toward the young planetary nebula K~3-35
- Magnetic fields in central stars of planetary nebulae?
- Weak magnetic fields in central stars of planetary nebulae?
- Observations and 3D Hydrodynamical models of planetary nebulae with Wolf Rayet type central stars
- The Unusual Distributions of Ionized Material and Molecular Hydrogen in NGC 6881: Signposts of Multiple Events of Bipolar Ejection in a Planetary Nebula
- Mapping Excitation in the Inner Regions of the Planetary Nebula NGC 5189 using HST WFC3 Imaging
- Stellar wind models of central stars of planetary nebulae
- Upper limits to the magnetic field in central stars of planetary nebulae
- Resolved imaging of the AR Puppis circumbinary disk
- Alignment of the Angular Momentum Vectors of Planetary Nebulae in the Galactic Bulge
- Morpho-kinematic properties of Wolf-Rayet planetary nebulae
- On the role of reduced wind mass-loss rate in enabling exoplanets to shape planetary nebulae
- Shaping bipolar Planetary Nebulae : How mass loss leads to waistline development
- The Class of Jsolated Stars and Luminous Planetary Nebulae in old stellar populations
- Precessing planetary magnetospheres in SiO stars ? First detection of quasi-periodic polarization fluctuations in R Leo and V Cam
- Mapping circumstellar magnetic fields of late-type evolved stars with the Goldreich-Kylafis effect: CARMA observations at mm of R Crt and R Leo
- Is Mira a magneto-dusty rotator?
- Planetary Nebulae with UVIT II: Revelations from FUV vision of Butterfly Nebula NGC 6302
- The enigmatic central star of the planetary nebula PRTM 1
- The modulation of SiO maser polarization by Jovian planets
- The Nature of the Stingray Nebula from Radio Observations
- Magnetic Fields in Paradigms of Planetary Nebulae and Related MHD Frontiers
- The peculiar molecular envelope around the post-AGB star IRAS 08544--4431
- Planetary Nebulae and How to Find Them: Color Identification in Big Broadband Surveys
- Long-term polarimetric observations of OH127.8+0.0
- Post-AGB nebular studies
- Olivier Chesneau's work on low mass stars
- Kinematical Properties of Planetary Nebulae with WR-type Nuclei
- Morphologies of Wolf-Rayet Planetary Nebulae based on IFU Observations
- Remodel the Envelope Around the 21 micrometer PPN IRAS 07134+1005
- The large-scale nebular pattern of a superwind binary in an eccentric orbit