Lensing of Stars by Spherical Gas Clouds
arXiv:astro-ph/9805083 · doi:10.1086/311751
Abstract
If the Galaxy contains ~10^{11}M_sol in cold gas clouds of ~Jovian mass and ÃU size, these clouds will act as converging lenses for optical light, magnifying background stars at a detectable rate. The resulting light curves can resemble those due to gravitational lensing by a point mass, raising the possibility that some of the events attributed to gravitational microlensing might in fact be due to ``gaseous lensing''. During a lensing event, the lens would impose narrow infrared and far-red H_2 absorption lines on the stellar spectrum. Existing programs to observe gravitational microlensing, supplemented by spectroscopy, can therefore be used to either detect such events or place limits on the number of such gas clouds present in the Galaxy.
8 pages, 5 eps figures, uses aas2pp4.sty . Submitted to Ap.J.Letters Major revision of paper originally submitted as 9805083
References in corpus (1)
Cited by in corpus (33)
- Science with ASKAP - the Australian Square Kilometre Array Pathfinder
- VAST: An ASKAP Survey for Variables and Slow Transients
- Atmospheric Lensing and Oblateness Effects During an Extrasolar Planetary Transit
- Small-Scale Interstellar Na I Structure Toward M92
- Atomic and Ionized Microstructures in the Diffuse Interstellar Medium
- Collisional baryonic dark matter halos
- Extreme radio-wave scattering associated with hot stars
- Thermal stability of cold clouds in galaxy halos
- On the Interaction Between Cosmic Rays and Dark Matter Molecular Clouds in the Milky Way. l Basic Considerations
- Simulations of galactic disks including a dark baryonic component
- Blank field submm sources, failed stars, and the dark matter
- Gamma ray astronomy and baryonic dark matter
- Microlensing by Compact Objects associated to Gas Clouds
- Constraints on Cold H_2 Clouds from Gravitational Microlensing Searches
- Interstellar Solid Hydrogen
- Unambiguous quasar microlensing
- A snowflake's chance in heaven
- Observable consequences of cold clouds as dark matter
- An Observational Test of Dark Matter as Cold Fractal Clouds
- Does Transparent Hidden Matter Generate Optical Scintillation?
- The Cloudy Universe
- Binary microlensing with plasma environment -- Star and planet
- Rotating baryonic dark halos
- CMB as a possible new tool to study the dark baryons in galaxies
- Interstellar absorptions towards the LMC: Small-scale density variations in Milky Way disc gas
- Nanolensing of gamma-ray bursts
- Cosmic snow clouds: self-gravitating gas spheres manifesting hydrogen condensation
- Observing Baryonic Dark Matter with ALMA
- Microlensing by gas filaments
- Cosmological nanolensing by dense gas clouds
- Free-floating "planets'' in the macrolensed quasar Q2237+0305
- Anomaly distribution in quasar magnitudes: a test of lensing by an hypothetic Supergiant Molecular Cloud in the Galactic halo
- Producing baryons from neutralinos in small H2 clumps over cosmological ages