Microlensing towards the Large Magellanic Cloud
arXiv:astro-ph/0207252 · doi:10.1051/0004-6361:20021027
Abstract
The nature and the location of the lenses discovered in the microlensing surveys done so far towards the LMC remain unclear. Motivated by these questions we compute the optical depth and particularly the number of expected events for self-lensing for both the MACHO and EROS2 observations. We calculate these quantities also for other possible lens populations such as thin and thick disk and galactic spheroid. Moreover, we estimate for each of these components the corresponding average event duration and mean mass using the mass moment method. By comparing the theoretical quantities with the values of the observed events it is possible to put some constraints on the location and the nature of the MACHOs. Clearly, given the large uncertainties and the few events at disposal it is not possible to draw sharp conclusions, nevertheless we find that certainly at least 3-4 MACHO events are due to lenses in LMC, which are most probably low mass stars, but that hardly all events can be due to self-lensing. This conclusions is even stronger when considering the EROS2 events, due to their spatial distribution. The most plausible solution is that the events observed so far are due to lenses belonging to different intervening populations: low mass stars in the LMC, in the thick disk, in the spheroid and possibly some true MACHOs in the halo.
To appear in A&A, 20 pages with 7 figures
Cited by in corpus (23)
- Gravitational Lensing
- Testing LMC Microlensing Scenarios: The Discrimination Power of the SuperMACHO Microlensing Survey
- POINT-AGAPE Pixel Lensing Survey of M31 : Evidence for a MACHO contribution to Galactic Halos
- No massive black holes in the Milky Way halo
- The Origin of the Microlensing Events Observed Towards the LMC and the Stellar Counterpart of the Magellanic Stream
- Microlensing towards the SMC: a new analysis of OGLE and EROS results
- Microlensing as a probe of the Galactic structure; 20 years of microlensing optical depth studies
- LMC Self-lensing from a new perspective
- Microlensing towards the LMC: self lensing for OGLE-II and OGLE-III
- Pixel lensing: Microlensing towards M31
- A new analysis of the MEGA M31 microlensing events
- LMC self lensing for OGLE-II microlensing observations
- Microlensing towards M31 with MDM data
- Monte Carlo analysis of the MEGA microlensing events towards M31
- Microlensing towards LMC: a study of the LMC halo contribution
- Cluster-Cluster Microlensing as a Probe of Intracluster Stars, MACHOs, and Remnants of the First Generation Stars
- Probing isolated compact remnants with microlensing
- Microlensing signature of a white dwarf population in the galactic halo
- M31 Pixel Lensing PLAN Campaign: MACHO Lensing and Self Lensing Signals
- A theoretical calculation of microlensing signatures caused by free-floating planets towards the Galactic bulge
- Microlensing towards the LMC revisited by adopting a non-Gaussian velocity distribution for the sources
- Gravitational microlensing constraints on primordial black holes by Euclid
- Limits on compact halo objects as dark matter from gravitational microlensing