Constraints on Cold H_2 Clouds from Gravitational Microlensing Searches
arXiv:astro-ph/0006320 · doi:10.1086/318355
Abstract
It has been proposed that the Galaxy might contain a population of cold clouds in numbers sufficient to account for a substantial fraction of the total mass of the Galaxy. These clouds would have masses of the order of 10^{-3} Solar mass and sizes of the order of 10 AU. We consider here the lensing effects of such clouds on the light from background stars. A semianalytical formalism for calculation of the magnification event rate produced by such gaseous lensing is developed, taking into account the spatial distribution of the dark matter in the Galaxy, the velocity distribution of the lensing clouds and source stars, and motion of the observer. Event rates are calculated for the case of gaseous lensing of stars in the Large Magellanic Cloud and results are directly compared with the results of the search for gravitational microlensing events undertaken by the MACHO collaboration. The MACHO experiment strongly constrains the properties of the proposed molecular clouds, but does not completely rule them out. Future monitoring programs will either detect or more strongly constrain this proposed population.
36 pages, 9 figures, 1 table, typos corrected, minor changes
References in corpus (4)
- The MACHO Project: Microlensing Results from 5.7 Years of LMC Observations
- Chemical Abundance Constraints on White Dwarfs as Halo Dark Matter
- 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
Cited by in corpus (14)
- Observational Evidence for Primordial Black Holes: A Positivist Perspective
- Molecules in galaxies
- The signature of primordial black holes in the dark matter halos of galaxies
- Microlensing by Compact Objects associated to Gas Clouds
- A Search for Stellar Obscuration Events due to Dark Clouds
- Does Transparent Hidden Matter Generate Optical Scintillation?
- H_2D^+: a light on baryonic dark matter?
- Binary microlensing with plasma environment -- Star and planet
- Dense gas clouds and the Unidentified EGRET sources
- Nanolensing of gamma-ray bursts
- Microlensing by gas filaments
- Cosmological nanolensing by dense gas clouds
- Free-floating "planets'' in the macrolensed quasar Q2237+0305
- Detecting cold H2 globules in the outer Galactic disc by microlensing towards the Maffei 1 elliptical