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References
96
[1]
Andrews-Hanna "Ancient igneous intrusions and the early expansion of the Moon revealed by GRAIL gravity gradiometry" Science (2013) 10.1126/science.1231753
[2]
Araki "Lunar global shape and polar topography derived from Kaguya-LALT laser altimetry" Science (2009) 10.1126/science.1164146
[3]
Asmar "The scientific measurement system of the Gravity Recovery and Interior Laboratory (GRAIL) mission" Space Sci. Rev. (2013) 10.1007/s11214-013-9962-0
[4]
Bills "Discrepant estimates of moments of inertia of the Moon" J. Geophys. Res. (1995) 10.1029/95je03100
[5]
Brett "A lunar core of Fe-Ni-S" Geochim. Cosmochim. Acta (1973) 10.1016/0016-7037(73)90255-x
[6]
Brett "Melting relations in the Fe-rich portion of the system Fe-FeS at 30 kb pressure" Earth Planet. Sci. Lett. (1969) 10.1016/0012-821x(69)90119-8
[7]
Chen "Non-ideal liquidus curve in the Fe-S system and Mercury's snowing core" Geophys. Res. Lett. (2008) 10.1029/2008gl033311
[8]
Dickey "Lunar Laser Ranging: A continuing legacy of the Apollo program" Science (1994) 10.1126/science.265.5171.482
[9]
Dunn "Earth scale defined by modern satellite ranging observations" Geophys. Res. Lett. (1999) 10.1029/1999gl900260
[10]
Dwyer "A long-lived lunar dynamo driven by continuous mechanical stirring" Nature (2011) 10.1038/nature10564
[11]
Eckhardt "Physical librations due to the third and fourth degree harmonics of the lunar gravity potential" Moon (1973) 10.1007/bf02630658
[12]
Efroimsky "Tidal dissipation compared to seismic dissipation: In small bodies, earths, and super-earths" Astrophys. J. (2012) 10.1088/0004-637x/746/2/150
[13]
Efroimsky "Bodily tides near spin orbit resonances" Celest. Mech. Dyn. Astron. (2012) 10.1007/s10569-011-9397-4
[14]
Ferrari "Geophysical parameters of the Earth-Moon system" J. Geophys. Res. (1980) 10.1029/jb085ib07p03939
[15]
Fok "Accuracy assessment of lunar topography models" Earth Planets Space (2011) 10.5047/eps.2010.08.005
[16]
Folkner , W. M. J. G. Williams D. H. Boggs 2008 The planetary and lunar ephemeris DE 421
[17]
Folkner , W. M. J. G. Williams D. H. Boggs R. S. Park P. Kuchynka 2014 The planetary and lunar ephemerides DE430 and DE431 Interplanetary Network Progress Rep. 42-196
[18]
Garcia "Very preliminary reference Moon model" Phys. Earth Planet. Inter. (2011) 10.1016/j.pepi.2011.06.015
[19]
Garrick-Bethell "Early lunar magnetism" Science (2009) 10.1126/science.1166804
[20]
Goins "Lunar seismology: The internal structure of the Moon" J. Geophys. Res. (1981) 10.1029/jb086ib06p05061
[21]
Goldreich "Precession of the Moon's core" J. Geophys. Res. (1967) 10.1029/jz072i012p03135
[22]
Goldstein "Magnetic permeability measurements and a lunar core" Geophys. Res. Lett. (1976) 10.1029/gl003i006p00289
[23]
Goossens "Lunar degree 2 potential Love number determination from satellite tracking data" Geophys. Res. Lett. (2008) 10.1029/2007gl031960
[24]
Goossens "Lunar gravity field determination using SELENE same-beam differential VLBI tracking data" J. Geod. (2011) 10.1007/s00190-010-0430-2
[25]
Goossens , S. 2011b Improved high-resolution lunar gravity field model from SELENE and historical tracking data
[26]
Goossens "Global gravity field models of the Moon using GRAIL primary and extended mission data" Lunar Planet. Sci. (2014)
[27]
Gribb "Low frequency shear attenuation in polycrystalline olivine: Grain boundary diffusion and the physical significance of the Andrade model for viscoelastic rheology" J. Geophys. Res. (1998) 10.1029/98jb02786
[28]
Gudkova "Spectrum of the free oscillations of the Moon" Sol. Syst. Res. (2013) 10.1134/s0038094613010024
[29]
Gudkova "The exploration of the lunar interior using torsional oscillations" Planet. Space Sci. (2002) 10.1016/s0032-0633(02)00070-3
[30]
Han "New analysis of Lunar Prospector radio tracking data brings the nearside gravity field of the Moon with an unprecedented resolution" Icarus (2011) 10.1016/j.icarus.2011.07.020
[31]
Hirayama "The melting relation of the system, iron and carbon at high pressure and its bearing on the early stage of the Earth" Geophys. Res. Lett. (1993) 10.1029/93gl02131
[32]
Hood "Initial measurements of the lunar induced magnetic dipole moment using Lunar Prospector magnetometer data" Geophys. Res. Lett. (1999) 10.1029/1999gl900487
[33]
Jackson "Grainsize-sensitive viscoelastic relaxation in olivine: Towards a robust laboratory-based model for seismological application" Phys. Earth Planet. Inter. (2010) 10.1016/j.pepi.2010.09.005
[34]
Karato "Geophysical constraints on the water content of the lunar mantle and its implications for the origin of the Moon" Earth Planet. Sci. Lett. (2013) 10.1016/j.epsl.2013.10.001
[35]
Kaula "The physical librations of the Moon, including higher harmonic effects" Moon (1973) 10.1007/bf00581725
[36]
Khan "Does the Moon possess a molten core? - Probing the deep lunar interior using results from LLR and Lunar Prospector" J. Geophys. Res. (2004) 10.1029/2004je002294
[37]
Klipstein "The lunar gravity ranging system for the Gravity Recovery and Interior Laboratory (GRAIL) mission" Space Sci. Rev. (2013) 10.1007/s11214-013-9973-x
[38]
Konopliv , A. S. 2000 LP150Q file http://pds-geosciences.wustl.edu/lunar/lp-l-rss-5-gravity-v1/lp_1001/sha/jgl150q1.lbl
[39]
Konopliv "Improved gravity field of the Moon from Lunar Prospector" Science (1998) 10.1126/science.281.5382.1476
[40]
Konopliv "Recent gravity models as a result of the Lunar Prospector mission" Icarus (2001) 10.1006/icar.2000.6573
[41]
Konopliv "The JPL lunar gravity field to spherical harmonic degree 660 from the GRAIL primary mission" J. Geophys. Res. Planets (2013) 10.1002/jgre.20097
[42]
Konopliv "High-resolution lunar gravity fields from the GRAIL Primary and Extended Missions" Geophys. Res. Lett. (2014) 10.1002/2013gl059066
[43]
Le Bars "An impact-driven dynamo for the early Moon" Nature (2011) 10.1038/nature10565
[44]
Lemoine "High-degree gravity models from GRAIL primary mission data" J. Geophys. Res. Planets (2013) 10.1002/jgre.20118
[45]
Matsumoto "An improved lunar gravity field model from SELENE and historical tracking data: Revealing the farside gravity features" J. Geophys. Res. (2010) 10.1029/2009je003499
[46]
Matsuyama "Fossil figure contribution to the lunar figure" Icarus (2013) 10.1016/j.icarus.2012.10.025
[47]
Mazarico "GLGM-3: A degree 150 lunar gravity model from the historical tracking data of NASA Moon orbiters" J. Geophys. Res. (2010) 10.1029/2009je003472
[48]
Melosh "The origin of lunar mascon basins" Science (2013) 10.1126/science.1235768
[49]
Meyer "Precession of the lunar core" Icarus (2011) 10.1016/j.icarus.2010.09.016
[50]
Mohr "CODATA recommended values of the fundamental physical constants: 2010" Rev. Mod. Phys. (2012) 10.1103/revmodphys.84.1527

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Geophysical Research Letters
Journal of Geophysical Research: Pl...
Geophysical Journal International
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209
Citations
96
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Published
Jul 01, 2014
Vol/Issue
119(7)
Pages
1546-1578
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Cite This Article
James G. Williams, Alexander S. Konopliv, Dale H. Boggs, et al. (2014). Lunar interior properties from the GRAIL mission. Journal of Geophysical Research: Planets, 119(7), 1546-1578. https://doi.org/10.1002/2013je004559
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