High-resolution lunar gravity fields from the GRAIL Primary and Extended Missions

Author:

Konopliv Alex S.1,Park Ryan S.1,Yuan Dah-Ning1,Asmar Sami W.1,Watkins Michael M.1,Williams James G.1,Fahnestock Eugene1,Kruizinga Gerhard1,Paik Meegyeong1,Strekalov Dmitry1,Harvey Nate1,Smith David E.2,Zuber Maria T.2

Affiliation:

1. Jet Propulsion Laboratory; California Institute of Technology; Pasadena California USA

2. Department of Earth, Atmospheric and Planetary Sciences; Massachusetts Institute of Technology; Cambridge Massachusetts USA

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

Reference20 articles.

1. Ancient igneous intrusions and the early expansion of the Moon revealed by GRAIL gravity gradiometry;Andrews-Hanna;Science,2013

2. The scientific measurement system of the Gravity Recovery and Interior Laboratory (GRAIL) mission;Asmar;Space Sci. Rev.,2013

3. Lunar gravity field determination using SELENE same-beam differential VLBI tracking data;Goossens;J. Geod.,2011

4. Determination and localized analysis of intersatellite line of sight gravity difference: Results from the GRAIL primary mission;Han;J. Geophys. Res. Planets,2013

5. Harvey , N. E. Fahnestock D. Kahan A. Konopliv G. Kruizinga K. Oudrhiri M. Paik D. Yuan S. Asmar M. Watkins 2012 GRAIL level-1 algorithm theoretical basis document

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