Red Clump Stars as a Tracer of Microlensing Optical Depth
arXiv:astro-ph/9710133 · doi:10.1086/311141
Abstract
Zaritsky and Lin have recently suggested that the color magnitude diagram of the Large Magellanic Cloud (LMC) contains evidence of foreground red clump stars. They interpret this as evidence of tidal debris or a dwarf galaxy at a distance of kpc which may be responsible for the large gravitational microlensing optical depth observed by the MACHO Collaboration. I derive a relationship between the microlensing optical depth of such a foreground population and the observed density of foreground red clump stars. Recent observational determinations for Pop I and Pop II stellar mass functions are used to show that the surface density of foreground red clump stars claimed by Zaritsky and Lin implies a microlensing optical depth in the range which is only 3-13% of as determined by the MACHO Collaboration. If the foreground population has a similar star formation history to the LMC, then the implied is only 3-4% of .
7 pages, 1 figure
References in corpus (3)
Cited by in corpus (10)
- The Rotation Curve of the Large Magellanic Cloud and the Implications for Microlensing
- Self-Lensing Models of the LMC
- The Origin of the Microlensing Events Observed Towards the LMC and the Stellar Counterpart of the Magellanic Stream
- The MACHO Project Hubble Space Telescope Follow-Up: Preliminary Results on the Location of the Large Magellanic Cloud Microlensing Source Stars
- Red Clump Morphology as Evidence Against a New Intervening Stellar Population as the Primary Source of Microlensing Toward the LMC
- Microlens Parallaxes with SIRTF
- Constraints on Intervening Stellar Populations Toward the Large Magellanic Cloud
- Microlens Parallax Asymmetries Toward the LMC
- Magellanic Cloud Gravitational Microlensing Results: What Do They Mean?
- A New Argument Against An Intervening Stellar Population Toward the LMC