Probing Substellar Companions of AGB Stars through Spirals and Arcs
arXiv:1110.1288 · doi:10.1088/0004-637X/744/2/136
Abstract
Recent observations of strikingly well-defined spirals in the circumstellar envelopes of asymptotic giant branch (AGB) stars point to the existence of binary companions in these objects. In the case of planet or brown dwarf mass companions, we investigate the observational properties of the spiral-onion shell wakes due to the gravitational interaction of these companions with the outflowing circumstellar matter. Three dimensional hydrodynamical simulations at high resolution show that the substellar mass objects produce detectable signatures at 100 AU distance, for the wake induced by a Jupiter to brown dwarf mass object orbiting a solar mass AGB star. In particular, the arm pattern propagates with a speed depending on the local wind and sound speeds, implying possible variations in the arm separation in the wind acceleration region and/or in a slow wind with significant temperature variation. The pattern propagation speeds of the inner and outer boundaries differ by twice the sound speed, leading to the overlap of high density boundaries in slow winds and producing a subpattern of the spiral arm feature. Vertically, the wake forms concentric arcs with angular sizes anticorrelated to the wind Mach number. We provide an empirical formula for the peak density enhancement as a function of the mass, orbital distance, and velocity of the object as well as the wind and local sound speeds. In typical condition of AGB envelopes, the arm-interarm density contrast can be greater than 30 % of the background density within a distance of ~10(M_p/M_J) AU for the object mass M_p in units of Jupiter mass M_J. These results suggest that such features may probe unseen substellar mass objects embedded in the winds of AGB stars and may be useful in planning future high sensitivity/resolution observations with ALMA.
23 pages, 7 figures, 1 table, accepted for publication in Astrophysical Journal
References in corpus (9)
- Imaging the circumstellar envelopes of AGB stars
- Dynamical Friction of a Circular-Orbit Perturber in a Gaseous Medium
- Possible Molecular Spiral Arms in the Protoplanetary Disk of AB Aur
- Dynamical Friction of Double Perturbers in a Gaseous Medium
- The Formation of Crystalline Dust in AGB Winds from Binary Induced Spiral Shocks
- Nonlinear Dynamical Friction of a Circular-Orbit Perturber in a Gaseous Medium
- Gravitationally Induced Density Wake of a Circularly Orbiting Object As an Interpretative Framework of Ubiquitous Spirals and Arcs
- Tracing the asymmetry in the envelope around the carbon star CIT 6
- Envelope density pattern around wide binary AGB stars: a dynamical model
Cited by in corpus (18)
- Unexpectedly large mass loss during the thermal pulse cycle of the red giant R Sculptoris!
- ALMA data suggest the presence of a spiral structure in the inner wind of CW Leo
- The dust disk and companion of the nearby AGB star L2 Puppis - SPHERE/ZIMPOL polarimetric imaging at visible wavelengths
- The Formation and Evolution of Wind-Capture Disks In Binary Systems
- Wide Binary Effects on Asymmetries in Asymptotic Giant Branch Circumstellar Envelopes
- Large-scale environments of binary AGB stars probed by Herschel - I. Morphology statistics and case studies of R Aquarii and W Aquilae
- Wind morphology around cool evolved stars in binaries: the case of slowly accelerating oxygen-rich outflows
- A New Method of Determining the Characteristics of Evolved Binary Systems Revealed in the Observed Circumstellar Patterns: Application to AFGL 3068
- SPH modelling of companion-perturbed AGB outflows including a new morphology classification scheme
- Evidence of a Binary-Induced Spiral from an Incomplete Ring Pattern of CIT 6
- Templates of binary-induced spiral-shell patterns around mass-losing post-main sequence stars
- SPH modelling of wind-companion interactions in eccentric AGB binary systems
- HST Images Reveal Dramatic Changes in the Core of IRC+10216
- The detached dust shells around the carbon AGB stars R Scl and V644 Sco
- The planetary nebula IC 5148 and its ionized halo
- Circumstellar CO J = 3-2 detected around the evolving metal-poor ([Fe/H] ~ -1.15 dex) AGB star RU Vulpeculae
- Exact Analytic Solutions for a Ballistic Orbiting Wind
- 3D models of the circumstellar environments of evolved stars: Formation of multiple spiral structures