Detection of a Far-Infrared Bow-Shock Nebula Around R Hya: the First MIRIAD Results
arXiv:astro-ph/0607303 · doi:10.1086/507627
Abstract
We present the first results of the MIRIAD (MIPS [Multiband Imaging Photometer for Spitzer] Infra-Red Imaging of AGB [asymptotic giant branch] Dustshells) project using the Spitzer Space Telescope. The primary aim of the project is to probe the material distribution in the extended circumstellar envelopes (CSE) of evolved stars and recover the fossil record of their mass loss history. Hence, we must map the whole of the CSEs plus the surrounding sky for background subtraction, while avoiding the central star that is brighter than the detector saturation limit. With our unique mapping strategy, we have achieved better than one MJy/sr sensitivity in three hours of integration and successfully detected a faint (< 5 MJy/sr), extended (~400 arcsec) far-infrared nebula around the AGB star R Hya. Based on the parabolic structure of the nebula, the direction of the space motion of the star with respect to the nebula shape, and the presence of extended H alpha emission co-spatial to the nebula, we suggest that the detected far-IR nebula is due to a bow shock at the interface of the interstellar medium and the AGB wind of this moving star. This is the first detection of the stellar-wind bow-shock interaction for an AGB star and exemplifies the potential of Spitzer as a tool to examine the detailed structure of extended far-IR nebulae around bright central sources. \
10 pages, 2 figures, accepted for publication in ApJL
References in corpus (1)
Cited by in corpus (41)
- Fundamental parameters and infrared excesses of Hipparcos stars
- A far-infrared survey of bow shocks and detached shells around AGB stars and red supergiants
- MESS (Mass-loss of Evolved StarS), a Herschel Key Program
- The interaction of planetary nebulae and their AGB progenitors with the interstellar medium
- The enigmatic nature of the circumstellar envelope and bow shock surrounding Betelgeuse as revealed by Herschel. I. Evidence of clumps, multiple arcs, and a linear bar-like structure
- Knots in the Helix Nebula found in H2
- The Astrosphere of the Asymptotic Giant Branch Star Irc+10216
- AKARI/FIS Mapping of the ISM-Wind Bow Shock around Alpha Ori
- An Infrared Nebula Associated with Delta Cephei: Evidence of Mass Loss?
- Vortices in the wakes of AGB stars
- New Evidence for Mass Loss from delta Cephei from HI 21-cm Line Observations
- Discovery of an HI Counterpart to the Extended Tail of Mira
- The detached dust shells of AQ And, U Ant, and TT Cyg
- Large-scale environments of binary AGB stars probed by Herschel - I. Morphology statistics and case studies of R Aquarii and W Aquilae
- Modeling the Infrared Bow Shock at delta Velorum: Implications for Studies of Debris Disks and lambda Bootis Stars
- Herschel PACS and SPIRE imaging of CW Leo
- The Interaction of Asymptotic Giant Branch Stars with the Interstellar Medium
- Dust and molecular shells in asymptotic giant branch stars - Mid-infrared interferometric observations of R Aql, R Aqr, R Hya, W Hya and V Hya
- The formation of a detached shell around the carbon star Y CVn
- X Her and TX Psc: Two cases of ISM interaction with stellar winds observed by Herschel
- HI and CO in the circumstellar environment of the S-type star RS Cnc
- HI Observations of the Asymptotic Giant Branch Star X Herculis: Discovery of an Extended Circumstellar Wake Superposed on a Compact High-Velocity Cloud
- Late Stages of Stellar Evolution - Herschel's contributions
- Cometary Astropause of Mira Revealed in the Far-Infrared
- An HI Imaging Survey of Asymptotic Giant Branch Stars
- The interface between the stellar wind and interstellar medium around R Cassiopeiae revealed by far-infrared imaging
- HI and CO in the circumstellar environment of the oxygen-rich AGB star RX Lep
- Large-scale environments of binary AGB stars probed by Herschel. II: Two companions interacting with the wind of pi1 Gruis
- Discovery of a halo around the Helix Nebula NGC 7293 in the WISE all-sky survey
- The rebrightening of planetary nebulae through ISM interaction
- The Double Dust Envelopes of R Coronae Borealis Stars
- Dusty shells surrounding the carbon variables S Scuti and RT Capricorni
- Polarization simulations of stellar wind bow shock nebulae. I. The case of electron scattering
- A Review of AGB Mass Loss Imaging Techniques
- Wide Field CO Mapping in the Region of IRAS 19312+1950
- ATOMIUM: Continuum emission and evidence of dust enhancement from binary motion
- Faint but not forgotten. I. First results from a search for astrospheres around AGB stars in the far-ultraviolet
- Search for systemic mass loss in Algols with bow shocks
- Reconciling the emission mechanism discrepancy in Mira's tail, and its evolution in an interface with shear
- AKARI Mission Program: Excavating Mass Loss History in Extended Dust Shells of Evolved Stars (MLHES) I. Far-IR Photometry
- Observing stellar bow shocks