General relativistic deflection of light by mass, dipole, and quadrupole moments of gravitational field of a moving massive planet in the Solar system is derived in the approximation of the linearized Einstein equations. All terms of order 1 microarcsecond are taken into account, parametrized, and classified in accordance with their physical origin. We discuss the observational capabilities of the near-future optical and radio interferometers for detecting the Doppler modulation of the radial deflection, and the dipolar and quadrupolar light-ray bendings by Jupiter and the Saturn
The current searches for microlensing events towards the galactic bulge can be used to detect planet...
Abstract. The accuracy of astrometric observations conducted via a space-borne optical interferomete...
Abstract—We used more than 250 000 high-precision American and Russian radar observations of the inn...
General relativistic deflection of light by mass, dipole, and quadrupole moments of gravitational fi...
Gravitational light deflection in the Solar System can be detected by high precision astrometric mea...
Gravitational light deflection in the Solar System can be detected by high precision astrometric mea...
This paper analyses the relativistic stellar aberration requirements for the Space Interferometry Mi...
The deflection of light by massive bodies has been of interest to mathematicians and physicists fro...
We have determined the relativistic light deflection of the quasar J0842+1835 as Jupiter passed with...
Since VLBI techniques give microarcsecond position accuracy of celestial objects, tests of GR using ...
Driven entirely by human curiosity, the effect of the gravitational bending of light has evolved on ...
The accuracy of astrometric observations conducted via a space-borne optical interferometer orbiting...
We study Doppler effects in curved space-time, i.e. the frequency shifts induced on electromagnetic ...
Senior Project submitted to The Division of Science, Mathematics and Computing of Bard College
Astrophysical space missions deliver invaluable information about our universe, stellar dynamics of ...
The current searches for microlensing events towards the galactic bulge can be used to detect planet...
Abstract. The accuracy of astrometric observations conducted via a space-borne optical interferomete...
Abstract—We used more than 250 000 high-precision American and Russian radar observations of the inn...
General relativistic deflection of light by mass, dipole, and quadrupole moments of gravitational fi...
Gravitational light deflection in the Solar System can be detected by high precision astrometric mea...
Gravitational light deflection in the Solar System can be detected by high precision astrometric mea...
This paper analyses the relativistic stellar aberration requirements for the Space Interferometry Mi...
The deflection of light by massive bodies has been of interest to mathematicians and physicists fro...
We have determined the relativistic light deflection of the quasar J0842+1835 as Jupiter passed with...
Since VLBI techniques give microarcsecond position accuracy of celestial objects, tests of GR using ...
Driven entirely by human curiosity, the effect of the gravitational bending of light has evolved on ...
The accuracy of astrometric observations conducted via a space-borne optical interferometer orbiting...
We study Doppler effects in curved space-time, i.e. the frequency shifts induced on electromagnetic ...
Senior Project submitted to The Division of Science, Mathematics and Computing of Bard College
Astrophysical space missions deliver invaluable information about our universe, stellar dynamics of ...
The current searches for microlensing events towards the galactic bulge can be used to detect planet...
Abstract. The accuracy of astrometric observations conducted via a space-borne optical interferomete...
Abstract—We used more than 250 000 high-precision American and Russian radar observations of the inn...