An Ultra-High-Resolution Survey of the Interstellar ^7Li-to-^6Li Isotope Ratio in the Solar Neighborhood
arXiv:astro-ph/0212233 · doi:10.1086/346264
Abstract
In an effort to probe the extent of variations in the interstellar ^7Li/^6Li ratio seen previously, ultra-high-resolution (R ~ 360,000), high signal-to-noise spectra of stars in the Perseus OB2 and Scorpius OB2 Associations were obtained. These measurements confirm our earlier findings of an interstellar ^7Li/^6Li ratio of about 2 toward o Per, the value predicted from models of Galactic cosmic ray spallation reactions. Observations of other nearby stars yield limits consistent with the isotopic ratio ~ 12 seen in carbonaceous chondrite meteorites. If this ratio originally represented the gas toward o Per, then to decrease the original isotope ratio to its current value an order of magnitude increase in the Li abundance is expected, but is not seen. The elemental K/Li ratio is not unusual, although Li and K are formed via different nucleosynthetic pathways. Several proposals to account for the low ^7Li/^6Li ratio were considered, but none seems satisfactory. Analysis of the Li and K abundances from our survey highlighted two sight lines where depletion effects are prevalent. There is evidence for enhanced depletion toward X Per, since both abundances are lower by a factor of 4 when compared to other sight lines. Moreover, a smaller Li/H abundance is observed toward 20 Aql, but the K/H abundance is normal, suggesting enhanced Li depletion (relative to K) in this direction. Our results suggest that the ^7Li/^6Li ratio has not changed significantly during the last 4.5 billion years and that a ratio ~ 12 represents most gas in the solar neighborhood. In addition, there appears to be a constant stellar contribution of ^7Li, indicating that one or two processes dominate its production in the Galaxy.
54 pages, accepted for publication in the Astrophysical Journal
References in corpus (5)
- The 'Forbidden' Abundance of Oxygen in the Sun
- A Reappraisal of the Solar Photospheric C/O Ratio
- Galactic chemical abundance evolution in the solar neighborhood up to the Iron peak
- The stellar origin of 7Li - Do AGB stars contribute a substantial fraction of the local Galactic lithium abundance?
- Physical Conditions in the Foreground Gas of Reflection Nebulae: NGC 2023, vdB 102, and NGC 7023
Cited by in corpus (21)
- Observation of interstellar lithium in the low-metallicity Small Magellanic Cloud
- Further Evidence for Chemical Fractionation from Ultraviolet Observations of Carbon Monoxide
- Lithium Enrichment Signatures of Planetary Engulfment Events in Evolved Stars
- FUSE Measurements of Interstellar Fluorine
- Diffuse Atomic and Molecular Gas in the Interstellar Medium of M82 toward SN 2014J
- Tracking the evolution of lithium in giants using asteroseismology: Super-Li-rich stars are almost exclusively young red-clump stars
- Spectroscopic study of two new super Li rich red clump K giants
- Abundances and Depletions of Neutron-Capture Elements in the Interstellar Medium
- High-resolution spectroscopic analysis of a large sample of Li-rich giants found by LAMOST
- The Abundance of Boron in Diffuse Interstellar Clouds
- Probing Primordial and Pre-Galactic Lithium with High Velocity Clouds
- The Interstellar Rubidium Isotope Ratio toward Rho Ophiuchi A
- Lithium in Kepler Red Giants: Defining Normal and Anomalous
- Extragalactic 85Rb/87Rb and 6Li/7Li ratios in the Small Magellanic Cloud
- The 7Li/6Li Isotope Ratio Near the Supernova Remnant IC 443
- Rubidium in the Interstellar Medium
- Unveiling Vela - Time Variability of Na I D lines in the Direction of the Vela Supernova Remnant
- Parsec-scale Variations in the 7Li/6Li Isotope Ratio Toward IC 348 and the Per OB 2 Association
- Mapping the Cosmic-Ray Ionization Rate in the Local Galaxy with H
- High-velocity interstellar absorption associated with the supernova remnant W28
- Boron Abundances in Diffuse Interstellar Clouds