The Structure of the Local Interstellar Medium. VI. New MgII, FeII, and MnII Observations Toward Stars Within 100 Parsecs
arXiv:1403.8096 · doi:10.1088/0004-637X/787/1/75
Abstract
We analyze high-resolution spectra obtained with the Space Telescope Imaging Spectrograph onboard the Hubble Space Telescope toward 34 nearby stars (<100 pc) to record MgII, FeII and MnII absorption due to the local interstellar medium (LISM). Observations span the entire sky, probing previously unobserved regions of the LISM. We detected one to six individual absorption components along any given sight line, and the number of absorbers roughly correlates with the pathlength. This high-resolution near-ultraviolet (NUV) spectroscopic survey was specifically designed for sight lines with existing far-UV (FUV) observations. The FUV spectra include many intrinsically broad absorption lines (i.e., of low atomic mass ions) and often observed at medium resolution. The LISM NUV narrow-line absorption component structure presented here can be used to more accurately interpret the archival FUV observations. As an example of this synergy, we present a new analysis of the temperature and turbulence along the line of sight toward epsilon Ind. The new observations of LISM velocity structure are also critical in the interpretation of astrospheric absorption derived from fitting the saturated HI Lyman-alpha profile. As an example, we reanalyze the spectrum of lambda And and find that this star likely does have an astrosphere. Two stars in the sample that have circumstellar disks (49 Cet and HD141569) show evidence for absorption due to disk gas. Finally, the substantially increased number of sight lines is used to test and refine the three-dimensional kinematic model of the LISM, and search for previously unidentified clouds within the Local Bubble. We find that every prediction made by the Redfield & Linsky (2008) kinematic model of the LISM is confirmed by an observed component in the new lines of sight.
58 pages, 25 figures. Accepted for publication in ApJ
References in corpus (5)
- The Structure of the Local Interstellar Medium V: Electron Densities
- The Carbon-Rich Gas in the Beta Pictoris Circumstellar Disk
- The Boundary Conditions of the Heliosphere: Photoionization Models Constrained by Interstellar and In Situ Data
- A Resolved Molecular Gas Disk around the Nearby A Star 49 Ceti
- The Origin of Radio Scintillation In the Local Interstellar Medium
Cited by in corpus (13)
- Simulating the environment around planet-hosting stars - II. Stellar winds and inner astrospheres
- A Very Bright, Very Hot, and Very Long Flaring Event from the M Dwarf Binary System DG CVn
- The interstellar cloud surrounding the Sun: a new perspective
- Volatile-Rich Circumstellar Gas in the Unusual 49 Ceti Debris Disk
- First scattered-light images of the gas-rich debris disk around 49 Ceti
- The interface between the outer heliosphere and the inner lism: Morphology of the local interstellar cloud, its hydrogen hole, stromgren shells, and Fe accretion
- Mixing Interstellar Clouds Surrounding the Sun
- Mapping diffuse interstellar bands in the local ISM on small scales via MUSE 3D spectroscopy
- Intra-day variability observations and the VLBI structure analysis of quasar S4 0917+624
- The nearby interstellar medium towards alpha Leo -- UV observations and modeling of a warm cloud within hot gas
- Inhomogeneity in the Local ISM and its Relation to the Heliosphere
- A new perspective on the interstellar cloud surrounding the Sun from UV absorption line results
- The Colorado Ultraviolet Transit Experiment (CUTE) signal to noise calculator