Seventeen years of lunar ranging data have been analyzed to determine lunar second-degree moment differences, third-degree gravitational harmonics, Love number, rotational dissipation and retroreflector coordinates
Over the past 40 years, Lunar Laser Ranging (LLR, developed by the Univ. of Maryland (PI) and INFN-L...
Laser ranging to retroreflector arrays placed on the lunar surface by the Apollo astronauts and the ...
Over the past 40 years, Lunar Laser Ranging (LLR, developed by the Univ. of Maryland (PI) and INFN-L...
Experience with the dynamics and data analyses for Earth and Moon reveals both similarities and diff...
Laser pulses fired at retroreflectors on the Moon provide very accurate ranges. Analysis yields info...
Laser pulses fired at retroreflectors on the Moon provide very accurate ranges. Analysis yields info...
Laser pulses fired at retroreflectors on the Moon provide very accurate ranges. Analysis yields info...
The effects of elasticity and of tidal friction within the Moon were incorporated into the numerical...
International audienceThe Lunar Laser Ranging experiment has been active since 1969 when Apollo astr...
International audienceThe Lunar Laser Ranging experiment has been active since 1969 when Apollo astr...
The interior properties of the Moon influence lunar tides and rotation. Three-axis rotation (physica...
Variations in rotation and orientation of the Moon are sensitive to solid-body tidal dissipation, di...
Lunar laser ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
Lunar laser ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
Lunar laser ranging (LLR) has been a workhorse for testing general relativity over the past four dec...
Over the past 40 years, Lunar Laser Ranging (LLR, developed by the Univ. of Maryland (PI) and INFN-L...
Laser ranging to retroreflector arrays placed on the lunar surface by the Apollo astronauts and the ...
Over the past 40 years, Lunar Laser Ranging (LLR, developed by the Univ. of Maryland (PI) and INFN-L...
Experience with the dynamics and data analyses for Earth and Moon reveals both similarities and diff...
Laser pulses fired at retroreflectors on the Moon provide very accurate ranges. Analysis yields info...
Laser pulses fired at retroreflectors on the Moon provide very accurate ranges. Analysis yields info...
Laser pulses fired at retroreflectors on the Moon provide very accurate ranges. Analysis yields info...
The effects of elasticity and of tidal friction within the Moon were incorporated into the numerical...
International audienceThe Lunar Laser Ranging experiment has been active since 1969 when Apollo astr...
International audienceThe Lunar Laser Ranging experiment has been active since 1969 when Apollo astr...
The interior properties of the Moon influence lunar tides and rotation. Three-axis rotation (physica...
Variations in rotation and orientation of the Moon are sensitive to solid-body tidal dissipation, di...
Lunar laser ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
Lunar laser ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
Lunar laser ranging (LLR) has been a workhorse for testing general relativity over the past four dec...
Over the past 40 years, Lunar Laser Ranging (LLR, developed by the Univ. of Maryland (PI) and INFN-L...
Laser ranging to retroreflector arrays placed on the lunar surface by the Apollo astronauts and the ...
Over the past 40 years, Lunar Laser Ranging (LLR, developed by the Univ. of Maryland (PI) and INFN-L...