The luminosity variation of a stellar source due to the gravitational microlensing effect can be considered also if the light rays are defocused (instead of focused) toward the observer. In this case, we should detect a gap instead of a peak in the light curve of the source. Actually, we describe how the phenomenon depends on the relative position of source and lens with respect to the observer: if the lens is between, we have focusing, if the lens is behind, we have defocusing. It is shown that the number of events with predicted gaps is equal to the number of events with peaks in the light curves
Gravitational microlensing is a rare event in which the light from a foreground star (source star) i...
It is conventional to calculate the probability of microlensing for a cosmologically distant source ...
Gravitational microlensing is a powerful method for discovering Isolated Stellar-Mass Black Holes(IS...
If the objects responsible for gravitational microlensing (ML) of Galactic-bulge stars are faint dwa...
Microlensing promises to be a powerful tool for studying distant galaxies and quasars. As the data a...
Recently, Heyrovsk\'y & Sasselov (1999) investigated the sensitivity of {\it single-lens} gravitatio...
Basics of standard theory of microlensing are introduced. Results of microlensing observations towar...
There are two possible causes of variability in gravitationally lensed quasars: intrinsic fluctuatio...
Gravitational microlensing has generated a great deal of scientific interest over recent years. Thi...
The phenomena of gravitational microlensing are described, and predictions are made about its possib...
The phenomena of gravitational microlensing are described, and predictions are made about its possib...
peer reviewedExtended dark matter (DM) substructures may play the role of microlenses in the Milky W...
The passage of stars through the beam of a lensed quasar can induce violent fluctuations in its appa...
We report the discovery of a short-duration microlensing candidate in the Northern field of the POIN...
The Astrophysical Journal. 498, pp. 156.We discuss the prospect of deblending microlensing events by...
Gravitational microlensing is a rare event in which the light from a foreground star (source star) i...
It is conventional to calculate the probability of microlensing for a cosmologically distant source ...
Gravitational microlensing is a powerful method for discovering Isolated Stellar-Mass Black Holes(IS...
If the objects responsible for gravitational microlensing (ML) of Galactic-bulge stars are faint dwa...
Microlensing promises to be a powerful tool for studying distant galaxies and quasars. As the data a...
Recently, Heyrovsk\'y & Sasselov (1999) investigated the sensitivity of {\it single-lens} gravitatio...
Basics of standard theory of microlensing are introduced. Results of microlensing observations towar...
There are two possible causes of variability in gravitationally lensed quasars: intrinsic fluctuatio...
Gravitational microlensing has generated a great deal of scientific interest over recent years. Thi...
The phenomena of gravitational microlensing are described, and predictions are made about its possib...
The phenomena of gravitational microlensing are described, and predictions are made about its possib...
peer reviewedExtended dark matter (DM) substructures may play the role of microlenses in the Milky W...
The passage of stars through the beam of a lensed quasar can induce violent fluctuations in its appa...
We report the discovery of a short-duration microlensing candidate in the Northern field of the POIN...
The Astrophysical Journal. 498, pp. 156.We discuss the prospect of deblending microlensing events by...
Gravitational microlensing is a rare event in which the light from a foreground star (source star) i...
It is conventional to calculate the probability of microlensing for a cosmologically distant source ...
Gravitational microlensing is a powerful method for discovering Isolated Stellar-Mass Black Holes(IS...