Range measurements from the lidar instrument carried aboard the Clementine spacecraft have been used to produce an accurate global topographic model of the Moon. This paper discusses the function of the lidar; the acquisition, processing, and filtering of observations to produce a global topographic model; and the determination of parameters that define the fundamental shape of the Moon. Our topographic model: a 72nd degree and order spherical harmonic expansion of lunar radii, is designated Goddard Lunar Topography Model 2 (GLTM 2). This topographic field has an absolute vertical accuracy of approximately 100 m and a spatial resolution of 2.5 deg. The field shows that the Moon can be described as a sphere with maximum positive and negative...
an instrument on the Lunar Reconnaissance Orbiter, has collected over 2.0 × 109 measurements of elev...
Lunar Laser Ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
This work has been partially supported by grants from NASA Goddard Space Flight Center (POS-97647-Z)...
Clementine stereoimagery has been used to produce digital elevation models of the Moon, at a scale o...
Clementine stereoimagery has been used to produce digital elevation models of the Moon, at a scale o...
The Lunar Orbiter Laser Altimeter (LOLA) onboard the Lunar Reconnaissance Orbiter (LRO) has been ope...
More than 3 million range measurements from the Chang'E-1 Laser Altimeter have been used to prod...
A global lunar topographic map with a spatial resolution of finer than 0.5 degree has been derived u...
The acquisition of new global elevation data from the Lunar Orbiter Laser Altimeter, carried on the ...
The acquisition of new global elevation data from the Lunar Orbiter Laser Altimeter, carried on the ...
A spherical harmonic model of the lunar gravity field complete to degree and order 70 has been devel...
Understanding the global topography of the Moon is especially important for answering questions conc...
of 1994. During this time it collected global 11-band multispectral images and near global altimetry...
We analyzed images, obtained by the Galileo and Clementine spacecraft in 1992 and 1994 using state-o...
One of the critical datasets for optimal selection of future lunar landing sites is local- to region...
an instrument on the Lunar Reconnaissance Orbiter, has collected over 2.0 × 109 measurements of elev...
Lunar Laser Ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
This work has been partially supported by grants from NASA Goddard Space Flight Center (POS-97647-Z)...
Clementine stereoimagery has been used to produce digital elevation models of the Moon, at a scale o...
Clementine stereoimagery has been used to produce digital elevation models of the Moon, at a scale o...
The Lunar Orbiter Laser Altimeter (LOLA) onboard the Lunar Reconnaissance Orbiter (LRO) has been ope...
More than 3 million range measurements from the Chang'E-1 Laser Altimeter have been used to prod...
A global lunar topographic map with a spatial resolution of finer than 0.5 degree has been derived u...
The acquisition of new global elevation data from the Lunar Orbiter Laser Altimeter, carried on the ...
The acquisition of new global elevation data from the Lunar Orbiter Laser Altimeter, carried on the ...
A spherical harmonic model of the lunar gravity field complete to degree and order 70 has been devel...
Understanding the global topography of the Moon is especially important for answering questions conc...
of 1994. During this time it collected global 11-band multispectral images and near global altimetry...
We analyzed images, obtained by the Galileo and Clementine spacecraft in 1992 and 1994 using state-o...
One of the critical datasets for optimal selection of future lunar landing sites is local- to region...
an instrument on the Lunar Reconnaissance Orbiter, has collected over 2.0 × 109 measurements of elev...
Lunar Laser Ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
This work has been partially supported by grants from NASA Goddard Space Flight Center (POS-97647-Z)...