Abstract We investigate the impact of viscoelastic tidal deformation of the Moon on the motion of a polar orbiter. The dissipative effects in the Moon’s interior, i.e., tidal phase lags, are modeled as Fourier series sampled at given frequencies associated with linear combinations of Delaunay arguments, the fundamental parameters describing the lunar motion around the Earth and the Sun. We implement the tidal model to evaluate the temporal lunar gravity field and the induced perturbation on the orbiter. We validate the numerical scheme via a frequency analysis of the perturbed orbital motion. We show that, in the case of the Lunar Reconnaissance Orbiter at a low altitude of less than 200 km, the main lunar tides and hence the potential Love...
The study of the tides of a celestial bodies can unveil important information about their interior a...
The uneven mass distribution of the Moon highly perturbs the lunar spacecrafts. This uneven mass dis...
Low-altitude, near-polar orbits are very desirable as science orbits for missions to planetary satel...
We investigate the impact of viscoelastic tidal deformation of the Moon on the motion of a polar orb...
Monitoring tidally-induced deformations of the Moon from orbiting and landed spacecraft would provid...
Important clues on the constitution of the lunar interior can be gained by monitoring tidally-induc...
Abstract (2,250 Maximum Characters): In this communication we report results from the application to...
Experience with the dynamics and data analyses for Earth and Moon reveals both similarities and diff...
The rotation of the Moon is influenced by solid-body tides and interaction at a liquid-core/solid-ma...
© 2021, Pleiades Publishing, Ltd. Abstract: The work is devoted to the study of the physical librati...
The Moon displays a number of hemispherically asymmetric (i.e., harmonic degree-1) features, includi...
Variations in rotation and orientation of the Moon are sensitive to solid-body tidal dissipation, di...
We use the tidal deformations of the Moon induced by the Earth and the Sun as a tool for studying th...
International audienceIcy and rocky satellites of our solar system display a diverse range of geolog...
Interpretation of the data obtained throughout the period of more than 40 years by Lunar Laser Rangi...
The study of the tides of a celestial bodies can unveil important information about their interior a...
The uneven mass distribution of the Moon highly perturbs the lunar spacecrafts. This uneven mass dis...
Low-altitude, near-polar orbits are very desirable as science orbits for missions to planetary satel...
We investigate the impact of viscoelastic tidal deformation of the Moon on the motion of a polar orb...
Monitoring tidally-induced deformations of the Moon from orbiting and landed spacecraft would provid...
Important clues on the constitution of the lunar interior can be gained by monitoring tidally-induc...
Abstract (2,250 Maximum Characters): In this communication we report results from the application to...
Experience with the dynamics and data analyses for Earth and Moon reveals both similarities and diff...
The rotation of the Moon is influenced by solid-body tides and interaction at a liquid-core/solid-ma...
© 2021, Pleiades Publishing, Ltd. Abstract: The work is devoted to the study of the physical librati...
The Moon displays a number of hemispherically asymmetric (i.e., harmonic degree-1) features, includi...
Variations in rotation and orientation of the Moon are sensitive to solid-body tidal dissipation, di...
We use the tidal deformations of the Moon induced by the Earth and the Sun as a tool for studying th...
International audienceIcy and rocky satellites of our solar system display a diverse range of geolog...
Interpretation of the data obtained throughout the period of more than 40 years by Lunar Laser Rangi...
The study of the tides of a celestial bodies can unveil important information about their interior a...
The uneven mass distribution of the Moon highly perturbs the lunar spacecrafts. This uneven mass dis...
Low-altitude, near-polar orbits are very desirable as science orbits for missions to planetary satel...