We present a statistical analysis of the laser ranging data of LAGEOS and LAGEOS 2 satellites which have provided a test of dragging of inertial frames, or frame-dragging, by rotating mass as predicted by General Relativity. As a result, the analysis of the residuals, after filtering out the periodic effects, is consistent with a Gaussian model, with a nonzero mean in agreement with the one predicted by Lense-Thirring effect
In general relativity a current of mass-energy, such as a spinning body, gives rise to peculiar phen...
The Italian Space Agency's (ASI) LARES satellite was placed in orbit with a dedicated launch using t...
We summarize a laser-ranged satellite test of frame dragging, a prediction of General Relativity, an...
We present a statistical analysis of the laser ranging data of LAGEOS and LAGEOS 2 satellites which ...
Laser ranging satellites have proved their efficiency for high precision testing of the effect of fr...
Laser ranging satellites have proved their efficiency for high precision testing of the effect of fr...
We report the improved test of frame-dragging, an intriguing phenomenon predicted by Einstein’s Gene...
By analysing the observations of the orbits of the laser-ranged satellites LAGEOS and LAGEOS II, usi...
We apply the Kolmogorov statistic to analyse the residual data of two LAGEOS satellites on General R...
We apply the Kolmogorov statistic to analyse the residual data of two LAGEOS satellites on General R...
Cosmological observations have stimulated the implementation of new tests of Einstein’s gravitationa...
Laser ranging, both Lunar (LLR) and Satellite Laser Ranging (SLR), is one of the most accurate techn...
Satellite laser ranging provided for decades the most precise measurement of positions and velocitie...
After an introduction on phenomena due to spin and mass-energy currents on clocks and photons, we re...
The LARES mission was conceived to put an almost perfect test particle into an orbit around Earth th...
In general relativity a current of mass-energy, such as a spinning body, gives rise to peculiar phen...
The Italian Space Agency's (ASI) LARES satellite was placed in orbit with a dedicated launch using t...
We summarize a laser-ranged satellite test of frame dragging, a prediction of General Relativity, an...
We present a statistical analysis of the laser ranging data of LAGEOS and LAGEOS 2 satellites which ...
Laser ranging satellites have proved their efficiency for high precision testing of the effect of fr...
Laser ranging satellites have proved their efficiency for high precision testing of the effect of fr...
We report the improved test of frame-dragging, an intriguing phenomenon predicted by Einstein’s Gene...
By analysing the observations of the orbits of the laser-ranged satellites LAGEOS and LAGEOS II, usi...
We apply the Kolmogorov statistic to analyse the residual data of two LAGEOS satellites on General R...
We apply the Kolmogorov statistic to analyse the residual data of two LAGEOS satellites on General R...
Cosmological observations have stimulated the implementation of new tests of Einstein’s gravitationa...
Laser ranging, both Lunar (LLR) and Satellite Laser Ranging (SLR), is one of the most accurate techn...
Satellite laser ranging provided for decades the most precise measurement of positions and velocitie...
After an introduction on phenomena due to spin and mass-energy currents on clocks and photons, we re...
The LARES mission was conceived to put an almost perfect test particle into an orbit around Earth th...
In general relativity a current of mass-energy, such as a spinning body, gives rise to peculiar phen...
The Italian Space Agency's (ASI) LARES satellite was placed in orbit with a dedicated launch using t...
We summarize a laser-ranged satellite test of frame dragging, a prediction of General Relativity, an...