We present a theoretical foundation for relativistic astronomical measurements in curved space-time. In particular, we discuss a new iterative approach for describing the dynamics of an isolated astronomical N-body system in metric theories of gravity. To do this, we generalize the Fock-Chandrasekhar method of the weak-field and slow-motion approximation (WFSMA) and develop a theory of relativistic reference frames (RF's) for a gravitationally bounded many-extended-body problem. In any proper RF constructed in the immediate vicinity of an arbitrary body, the N-body solutions of the gravitational field equations are formally presented as a sum of the Riemann-flat inertial space-time, the gravitational field generated by the body itself, the ...
Recent astronomical discoveries -- quasars, pulsars, gravitational waves, cosmic microwave radiation...
We develop the canonical formalism for a system of $N$ bodies in lineal gravity and obtain exact sol...
Accretion disks surrounding compact objects, and other environmental factors, deviate satellites fro...
Due to its relatively large eccentricity and proximity to the Sun, Mercury's orbital motion provides...
Astrophysical space missions deliver invaluable information about our universe, stellar dynamics of ...
Recent modern space missions deliver invaluable information about origin of our universe, physical p...
Abstract. Astrophysical space missions deliver invaluable information about our universe, stellar dy...
Astrophysical space missions deliver invaluable information about our universe, stellar dynamics of ...
We construct a set of reference frames for description of the orbital and rotational motion of the M...
The regularities of the motion for every test body in photogravitational field of a star, which can s...
Theoretical frameworks for testing relativistic gravity are presented in terms of a system for analy...
To test General Relativity with the tracking data of the BepiColombo Mercury orbiter we need relativ...
The present volume aims to be a comprehensive survey on the derivation of the equations of motion, ...
We discuss a covariant generalization of the parametrized post-Newtonian (PPN) formalism in a class ...
In this thesis, I show how fundamental geodetic notions can be defined within a general relativistic...
Recent astronomical discoveries -- quasars, pulsars, gravitational waves, cosmic microwave radiation...
We develop the canonical formalism for a system of $N$ bodies in lineal gravity and obtain exact sol...
Accretion disks surrounding compact objects, and other environmental factors, deviate satellites fro...
Due to its relatively large eccentricity and proximity to the Sun, Mercury's orbital motion provides...
Astrophysical space missions deliver invaluable information about our universe, stellar dynamics of ...
Recent modern space missions deliver invaluable information about origin of our universe, physical p...
Abstract. Astrophysical space missions deliver invaluable information about our universe, stellar dy...
Astrophysical space missions deliver invaluable information about our universe, stellar dynamics of ...
We construct a set of reference frames for description of the orbital and rotational motion of the M...
The regularities of the motion for every test body in photogravitational field of a star, which can s...
Theoretical frameworks for testing relativistic gravity are presented in terms of a system for analy...
To test General Relativity with the tracking data of the BepiColombo Mercury orbiter we need relativ...
The present volume aims to be a comprehensive survey on the derivation of the equations of motion, ...
We discuss a covariant generalization of the parametrized post-Newtonian (PPN) formalism in a class ...
In this thesis, I show how fundamental geodetic notions can be defined within a general relativistic...
Recent astronomical discoveries -- quasars, pulsars, gravitational waves, cosmic microwave radiation...
We develop the canonical formalism for a system of $N$ bodies in lineal gravity and obtain exact sol...
Accretion disks surrounding compact objects, and other environmental factors, deviate satellites fro...