We consider the gravitational magnification of light for binary systems containing two compact objects: white dwarfs, a white dwarf and a neutron star or a white dwarf and a black hole. Light curves of the flares of the white dwarf caused by this effect were built in analytical approximations and by means of numerical calculations. We estimate the probability of the detection of these events in our Galaxy for different types of binaries and show that gravitational lensing provides a tool for detecting such systems. We propose to use the facilities of the Sloan Digital Sky Survey (SDSS) to search for these flares. It is possible to detect several dozen compact object pairs in such a programme over 5 years. This programme is apparently the be...
The population of solitary compact objects in the Galaxy is very diffcult to investigate. In this pa...
Binaries consisting of compact objects –– neutron stars, or black holes –– seem likely to become the...
The Einstein Telescope (ET), a wide-band, future third generation gravitational wave detector, is ex...
We consider the gravitational magnification of light for binary systems containing two compact objec...
Detecting compact objects such as black holes, white dwarfs, strange (quark) stars and neutron stars...
The population of solitary compact objects in the Galaxy is very difficult to investigate. In this p...
The vast majority of binaries containing a compact object and a regular star spend most of their tim...
Aims.The population of solitary compact objects in the Galaxy is very difficult to investigate. In ...
We calculate the light curves of galactic bulge stars magnified via microlensing by stellar-mass bin...
We search for gravitational wave (GW) events from LIGO-Virgo's third run that may have been affected...
Gravitational lensing is a powerful tool to detect compact matter on very different mass scales. Of ...
The presence of brown dwarfs in the dark galactic halo could be detected through their gravitational...
Aims. We investigate the chance of detecting proto-planetary or debris disks in stars that induce m...
We investigate the ability of ground-based gravitational-wave observatories to detect gravitational-...
We review the formation and evolution of compact binary stars consisting of white dwarfs (WDs), neut...
The population of solitary compact objects in the Galaxy is very diffcult to investigate. In this pa...
Binaries consisting of compact objects –– neutron stars, or black holes –– seem likely to become the...
The Einstein Telescope (ET), a wide-band, future third generation gravitational wave detector, is ex...
We consider the gravitational magnification of light for binary systems containing two compact objec...
Detecting compact objects such as black holes, white dwarfs, strange (quark) stars and neutron stars...
The population of solitary compact objects in the Galaxy is very difficult to investigate. In this p...
The vast majority of binaries containing a compact object and a regular star spend most of their tim...
Aims.The population of solitary compact objects in the Galaxy is very difficult to investigate. In ...
We calculate the light curves of galactic bulge stars magnified via microlensing by stellar-mass bin...
We search for gravitational wave (GW) events from LIGO-Virgo's third run that may have been affected...
Gravitational lensing is a powerful tool to detect compact matter on very different mass scales. Of ...
The presence of brown dwarfs in the dark galactic halo could be detected through their gravitational...
Aims. We investigate the chance of detecting proto-planetary or debris disks in stars that induce m...
We investigate the ability of ground-based gravitational-wave observatories to detect gravitational-...
We review the formation and evolution of compact binary stars consisting of white dwarfs (WDs), neut...
The population of solitary compact objects in the Galaxy is very diffcult to investigate. In this pa...
Binaries consisting of compact objects –– neutron stars, or black holes –– seem likely to become the...
The Einstein Telescope (ET), a wide-band, future third generation gravitational wave detector, is ex...