Shearer, C. K. Thermal and magmatic evolution of the Moon. Rev. Mineral. Geochem. 60, 365â518 (2006).
Lucey, P. Understanding the lunar surface and space-Moon interactions. Rev. Mineral. Geochem. 60, 83â219 (2006).
Vaniman, D., Dietrich, J., Taylor, G. J. & Heiken, G. in Lunar Sourcebook, A Userâs Guide to the Moon (eds Heiken, G. H., Vaniman, D. T. & French, B. M.) 5â26 (Cambridge Univ. Press, 1991).
Qian, Y. et al. The regolith properties of the Changâe-5 landing region and the ground drilling experiments using lunar regolith simulants. Icarus 337, 113508 (2020).
Korotev, R. Lunar geochemistry as told by lunar meteorites. Geochemistry 65, 297â346 (2005).
Joy, K. H. et al. Lunar meteorites. Rev. Mineral. Geochem. 89, 509â562 (2023).
Ip, W.-H., Yan, J., Li, C.-L. & Ouyang, Z.-Y. Preface: The Changâe-3 lander and rover mission to the Moon. Res. Astron. Astrophys. 14, 1511â1513 (2014).
Wu, W. et al. Lunar farside to be explored by Changâe-4. Nat. Geosci. 12, 222â223 (2019).
Li, C. et al. ChangâE-4 initial spectroscopic identification of lunar far-side mantle-derived materials. Nature 569, 378â382 (2019).
Shanmugam, M. et al. Alpha particle X-ray spectrometer onboard Chandrayaan-2 rover. Curr. Sci. 118, 53 (2020).
Meyer, H., Denevi, B., Robinson, M. & Boyd, A. The global distribution of lunar light plains from the lunar reconnaissance orbiter camera. J. Geophys. Res. Planets 125, e2019JE006073 (2020).
Spudis, P. D., Reisse, R. A. & Gillis, J. J. Ancient multiring basins on the Moon revealed by Clementine laser altimetry. Science 266, 1848â1851 (1994).
Speyerer, E. J., Robinson, M. S., Boyd, A., Wagner, R. V. & Henriksen, M. R. Exploration of the lunar south pole with LROC data products. Lunar Surface Science Workshop, LPI Contribution No. 2241, id.5132 (2020).
Sinha, R. K., Rani, A., Ruj, T. & Bhardwaj, A. Geologic investigation of lobate scarps in the vicinity of Chandrayaan-3 landing site in the southern high latitudes of the moon. Icarus 402, 115636 (2023).
Durga Prasad, K. et al. Contextual characterization study of Chandrayaan-3 primary landing site. Mon. Not. R. Astron. Soc. 526, L116âL123 (2023).
Mithun, N. P. S. et al. Ground calibration of Alpha Particle X-ray Spectrometer (APXS) on-board Chandrayaan-2 Pragyaan rover: an empirical approach. Planet. Space Sci. 187, 104923 (2020).
Korotev, R. L. Some things we can infer about the Moon from the composition of the Apollo 16 regolith. Meteorit. Planet. Sci. 32, 447â478 (1997).
Laul, J. C. & Schmitt, E. A. Chemical composition of Luna 20 rocks and soil and Apollo 16 soils. Geochim. Cosmochim. Acta 37, 927â942 (1973).
Radhakrishna, V. et al. Chandrayaan-2 large area soft X-ray spectrometer. Curr. Sci. 118, 219â225 (2020).
Pieters, C. et al. The Moon Mineralogy Mapper (M3) on Chandrayaan-1. Curr. Sci. 96, 500â505 (2009).
Bansal, B. M. et al. The chemical composition of soil from the Apollo 16 and Luna 20 sites. Earth Planet. Sci. Lett. 17, 29â35 (1972).
Wood, J. A., Dickey, J. S. Jr, Marvin, U. B. & Powell, B. N. Lunar anorthosites and a geophysical model of the moon. Geochim. Cosmochim. Acta Suppl. 1, 965 (1970).
Warren, P. H. The magma ocean concept and lunar evolution. Annu. Rev. Earth Planet. Sci. 13, 201â240 (1985).
Wood, J. A. in Origin of the Moon (eds Hartmann, W. K., Phillips, R. J. & Taylor, G. J.) 17â55 (Lunar and Planetary Institute, 1986).
Srivastava, Y., Basu Sarbadhikari, A., Day, J. M., Yamaguchi, A. & Takenouchi, A. A changing thermal regime revealed from shallow to deep basalt source melting in the Moon. Nat. Commun. 13, 7594 (2022).
Ohtake, M. et al. The global distribution of pure anorthosite on the Moon. Nature 461, 236â240 (2009).
Donaldson Hanna, K. L. et al. Global assessment of pure crystalline plagioclase across the Moon and implications for the evolution of the primary crust. J. Geophys. Res. Planets 119, 1516â1545 (2014).
Warren, P. H. Lunar anorthosites and the magma-ocean plagioclase-flotation hypotheses: importance of FeO enrichment in the parent magma. Am. Mineral. 75, 46â58 (1990).
Warren, P. H. A concise compilation of petrologic information on possibly pristine nonmare Moon rocks. Am. Mineral. 78, 360â376 (1993).
McCallum, I. S. A new view of the Moon in light of data from Clementine and Prospector missions. Earth Moon Planets 85, 253â269 (2001).
Cross, W., Iddings, J. P., Pirsson, L. V. & Washington, H. S. A quantitative chemico-mineralogical classification and nomenclature of igneous rocks. J. Geol. 10, 555â690 (1902).
Verma, S. P., Torres-Alvarado, I. S. & Velasco-Tapia, F. A revised CIPW norm. Swiss Bull. Mineral. Petrol. 83, 197â216 (2003).
Warren, P. H. & Korotev, R. L. Ground truth constraints and remote sensing of lunar highland crust composition. Meteorit. Planet. Sci. 57, 527â557 (2022).
Meyer, C. The lunar sample compendium. NASA https://curator.jsc.nasa.gov/Lunar/lsc/index.cfm (2012).
Lemelin, M., Lucey, P. G. & Camon, A. Compositional maps of the lunar polar regions derived from the Kaguya Spectral Profiler and the Lunar Orbiter Laser Altimeter data. Planet. Sci. J. 3, 63 (2022).
Wieczorek, M. A. & Zuber, M. T. The composition and origin of the lunar crust: constraints from central peaks and crustal thickness modeling. Geophys. Res. Lett. 28, 4023â4026 (2001).
Wieczorek, M. A. The constitution and structure of the lunar interior. Rev. Mineral. Geochem. 60, 221â364 (2006).
Dygert, N., Lin, J.-F., Marshall, E. W., Kono, Y. & Gardner, J. E. A low viscosity lunar magma ocean forms a stratified anorthitic flotation crust with mafic poor and rich units. Geophys. Res. Lett. 44, 11,282â11,291 (2017).
Tompkins, S. & Pieters, C. M. Mineralogy of the lunar crust: results from Clementine. Meteorit. Planet. Sci. 34, 25â41 (1999).
Stuart-Alexander, D. E. Geologic map of the central far side of the Moon. U.S. Geological Survey, IMAP 1047 (1978).
Yamamoto, S. et al. Possible mantle origin of olivine around lunar impact basins detected by SELENE. Nat. Geosci. 3, 533â536 (2010).
McGetchin, T. R., Settle, M. & Head, J. W. Radial thickness variation in impact crater ejecta: implications for lunar basin deposits. Earth Planet. Sci. Lett. 20, 226â236 (1973).
Fassett, C. I., Head, J. W., Smith, D. E., Zuber, M. T. & Neumann, G. A. Thickness of proximal ejecta from the Orientale Basin from Lunar Orbiter Laser Altimeter (LOLA) data: implications for multi-ring basin formation. Geophys. Res. Lett. 38, L17201 (2011).
Klima, R. L. et al. New insights into lunar petrology: distribution and composition of prominent low-Ca pyroxene exposures as observed by the Moon Mineralogy Mapper (M3). J. Geophys. Res. Planets 116, E00G06 (2011).
Sinha, R. K. et al. Geological characterization of Chandrayaan-2 landing site in the southern high latitudes of the Moon. Icarus 337, 113449 (2020).
Pike, R. J. Depth/diameter relations of fresh lunar craters: revision from spacecraft data. Geophys. Res. Lett. 1, 291â294 (1974).
Ivanov, B. A. Size-frequency distribution of small lunar craters: widening with degradation and crater lifetime. Sol. Syst. Res. 52, 1â25 (2018).
Borg, L. E., Connelly, J. N., Boyet, M. & Carlson, R. W. Chronological evidence that the Moon is either young or did not have a global magma ocean. Nature 477, 70â72 (2011).
Pernet-Fisher, J. F., Deloule, E. & Joy, K. H. Evidence of chemical heterogeneity within lunar anorthosite parental magmas. Geochim. Cosmochim. Acta 266, 109â130 (2019).
Gross, J., Treiman, A. H. & Mercer, C. N. M. in Proc. 43rd Lunar and Planetary Science Conference 2306 (Lunar and Planetary Institute, 2012).
Shirley, D. N. A partially molten magma ocean model. J. Geophys. Res. Solid Earth 88, A519âA527 (1983).
Elardo, S. M., Laneuville, M., McCubbin, F. M. & Shearer, C. K. Early crust building enhanced on the Moonâs nearside by mantle melting-point depression. Nat. Geosci. 13, 339â343 (2020).
Gross, J., Treiman, A. H. & Mercer, C. N. Lunar feldspathic meteorites: constraints on the geology of the lunar highlands, and the origin of the lunar crust. Earth Planet. Sci. Lett. 388, 318â328 (2014).
Song, E., Bandfield, J. L., Lucey, P. G., Greenhagen, B. T. & Paige, D. A. Bulk mineralogy of lunar crater central peaks via thermal infrared spectra from the Diviner Lunar Radiometer: a study of the Moonâs crustal composition at depth. J. Geophys. Res. Planets 118, 689â707 (2013).
Elkins-Tanton, L. T. Magma oceans in the inner solar system. Annu. Rev. Earth Planet. Sci. 40, 113â139 (2012).
Chowdhury, A. R. et al. Orbiter high resolution camera onboard Chandrayaan-2 orbiter. Curr. Sci. 118, 560â565 (2020).
Shearer, C. K., Elardo, S. M., Petro, N. E., Borg, L. E. & McCubbin, F. M. Origin of the lunar highlands Mg-suite: an integrated petrology, geochemistry, chronology, and remote sensing perspective. Am. Mineral. 100, 294â325 (2015).
Arnaud, K. A., George, I. M. & Tennant, A. F. The OGIP spectral file format. https://heasarc.gsfc.nasa.gov/docs/heasarc/ofwg/docs/spectra/ogip_92_007.pdf (2021).
Arnaud, K. A. in Astronomical Data Analysis Software and Systems V (eds Jacoby, G. H. & Barnes, J.) 17 (Astronomical Society of the Pacific, 1996).
Arnaud, K., Dorman, B., Gordon, C. & Rutkowski, K. Xspec usersâ guide. https://heasarc.gsfc.nasa.gov/xanadu/xspec/manual/manual.html (2024).
Campbell, J. L. et al. Calibration of the Mars Science Laboratory alpha particle X-ray spectrometer. Space Sci. Rev. 170, 319â340 (2012).
Narendranath, S. et al. Lunar elemental abundances as derived from Chandrayaan-2. Icarus 410, 115898 (2024).
Bhatt, M., Wöhler, C., Grumpe, A., Hasebe, N. & Naito, M. Global mapping of lunar refractory elements: multivariate regression vs. machine learning. Astron. Astrophys. 627, A155 (2019).
Pillai, N. S. et al. Chandrayaan-2 Large Area Soft X-ray Spectrometer (CLASS): calibration, in-flight performance and first results. Icarus 363, 114436 (2021).
Taylor, S. R. et al. Composition of the Descartes region, lunar highlands. Geochim. Cosmochim. Acta 37, 2665â2683 (1973).
Korotev, R. L. in Proc. 12th Lunar and Planetary Science Conference 577â605 (Pergamon Press, 1982).
Laul, J. C. & Schmitt, R. A. in Proc. 4th Lunar and Planetary Science Conference 460 (Pergamon Press, 1973).
Dowty, E., Keil, K. & Prinz, M. in The Apollo 15 Lunar Samples 62â66 (Lunar Science Institute, 1972).
Haskin, L. A., Helmke, P. A., Blanchard, D. P., Jacobs, J. W. & Telander, K. in Proc. 4th Lunar and Planetary Science Conference 1275â1296 (Pergamon Press, 1973).
Haskin, L. A. et al. in Proc. 5th Lunar and Planetary Science Conference 1213â1225 (Pergamon Press, 1974).
Haskin, L. A. & Korotev, R. L. in Proc. 12th Lunar and Planetary Science Conference 404â405 (Pergamon Press, 1981).
Laul, J. C. & Schmitt, R. A. in Proc. 6th Lunar and Planetary Science Conference 1231â1254 (Pergamon Press, 1975).
Philpotts, J. A. et al. in Proc. 4th Lunar and Planetary Science Conference 1427 (Pergamon Press, 1973).
Rhodes, J. M. & Hubbard, N. J. in Proc. 4th Lunar and Planetary Science Conference 1127 (Pergamon Press, 1973).
Ridley, W. I., Hubbard, N. J., Rhodes, J. M., Weismann, H. & Bansal, B. The petrology of lunar breccia 15445 and petrogenetic implications. J. Geol. 81, 621â631 (1973).
Rose, H. J. Jr et al. in Proc. 4th Lunar and Planetary Science Conference 1149 (Pergamon Press, 1973).
Rose, H. J. Jr et al. in Proc. 6th Lunar and Planetary Science Conference 1363â1373 (Pergamon Press, 1975).
Taylor, S. R. Chemical evidence for lunar melting and differentiation. Nature 245, 203â205 (1973).
Taylor, S. R. et al. in Proc. 5th Lunar and Planetary Science Conference 789 (Pergamon Press, 1974).
Wänke, H. et al. in Proc. 4th Lunar and Planetary Science Conference 1461 (Pergamon Press, 1973).
Wänke, H. et al. in Proc. 6th Lunar and Planetary Science Conference 1313â1340 (Pergamon Press, 1975).
Wänke, H. et al. in Proc. 7th Lunar and Planetary Science Conference 3479â3499 (Pergamon Press, 1976).
Nava, D. F. in Proc. 5th Lunar and Planetary Science Conference 1087â1096 (Pergamon Press, 1974).
Rhodes, J. M. et al. in Proc. 5th Lunar and Planetary Science Conference 1097â1117 (Pergamon Press, 1974).
Winzer, S. R. et al. Major, minor and trace element abundances in samples from the Apollo 17 station 7 boulder: implications for the origin of early lunar crustal rocks. Earth Planet. Sci. Lett. 23, 439â444 (1974).
Blanchard, D. P. et al. in Proc. 6th Lunar and Planetary Science Conference 2321â2341 (Pergamon Press, 1975).
Dixon, J. R. & Papike, J. J. in Proc. 6th Lunar and Planetary Science Conference 263â291 (Pergamon Press, 1975).
Dymek, R. F., Albee, A. L. & Chodos, A. A. in Proc. 6th Lunar and Planetary Science Conference 301â341 (Pergamon Press, 1975).
Warner, J. L., Simonds, C. H. & Phinney, W. C. in Proc. 7th Lunar and Planetary Science Conference 915 (Pergamon Press, 1976).
Lindstrom, M. M., Nielsen, R. L. & Drake, M. J. in Proc. 8th Lunar and Planetary Science Conference 2869â2888 (Pergamon Press, 1977).
Lindstrom, M. M., Marvin, U. B., Vetter, S. K. & Shervais, J. W. in Proc. 18th Lunar and Planetary Science Conference 169â185 (Cambridge Univ. Press/Lunar and Planetary Institute, 1988).
Murali, A. V., Ma, M. S., Laul, J. C. & Schmitt, R. A. in Proc. 8th Lunar and Planetary Science Conference 700 (Pergamon Press, 1977).
Warren, P. H. & Wasson, J. T. in Proc. 8th Lunar and Planetary Science Conference 2215â2235 (Pergamon Press, 1977).
Warren, P. H. & Wasson, J. T. in Proc. 9th Lunar and Planetary Science Conference 185â217 (Pergamon Press, 1978).
Warren, P. H. & Wasson, J. T. in Proc. 10th Lunar and Planetary Science Conference 2051â2083 (Pergamon Press, 1979).
Stöeffler, D., Knoell, H. D., Marvin, U. B., Simonds, C. H. & Warren, P. H. in Proc. Conf. Lunar Highlands Crust (eds Merrill, R. B. & Papike, J. J.) 51â70 (Pergamon Press, 1980).
James, O. B. & McGee, J. J. in Proc. 10th Lunar and Planetary Science Conference 713â743 (Pergamon Press, 1979).
Marvin, U. B. & Warren, P. H. in Proc. 11th Lunar and Planetary Science Conference 507â521 (Pergamon Press, 1980).
Ryder, G., Norman, M. D. & Score, R. A. in Proc. 11th Lunar and Planetary Science Conference 471â479 (Pergamon Press, 1980).
Taylor, G. J., Warner, R. D., Keil, K., Ma, M. S. & Schmitt, R. A. in Proc. Conf. Lunar Highlands Crust (eds Merrill, R. B. & Papike, J. J.) 339â352 (Pergamon Press, 1980).
Blanchard, D. P. & McKay, G. A. in Proc. 12th Lunar and Planetary Science Conference 83â85 (Pergamon Press, 1981).
Simonds, C. H. & Warner, J. L. in Proc. 12th Lunar and Planetary Science Conference 993â995 (Pergamon Press, 1981).
Warren, P. H., Taylor, G. J., Keil, K., Marshall, C. & Wasson, J. T. in Proc. 12th Lunar and Planetary Science Conference 1154â1156 (Pergamon Press, 1981).
Warren, P. H., Taylor, G. J., Keil, K., Marshall, C. & Wasson, J. T. in Proc. 12th Lunar and Planetary Science Conference 21â40 (Pergamon Press, 1982).
Warren, P. H., Taylor, G. J., Keil, K., Shirley, D. N. & Wasson, J. T. Petrology and chemistry of two âlargeâ granite clasts from the moon. Earth Planet. Sci. Lett. 64, 175â185 (1983).
Warren, P. H. et al. Seventh Foray: Whitlockite-rich lithologies, a diopside-bearing troctolitic anorthosite, ferroan anorthosites, and KREEP. J. Geophys. Res. Solid Earth 88, B151âB164 (1983).
Warren, P. H., Shirley, D. N. & Kallemeyn, G. W. A potpourri of pristine Moon rocks, including a VHK mare basalt and a unique, augite-rich Apollo 17 anorthosite. J. Geophys. Res. Solid Earth 91, 319â330 (1986).
Warren, P. H., Jerde, E. A. & Morris, R. V. in Proc. 18th Lunar and Planetary Science Conference 1060, (Cambridge Univ. Press, 1987).
Warren, P. H., Jerde, E. A. & Kallemeyn, G. W. in Proc. 20th Lunar and Planetary Science Conference 31â59 (Lunar and Planetary Institute, 1990).
Warren, P. H., Jerde, E. A. & Kallemeyn, G. W. in Proc. 21st Lunar and Planetary Science Conference 51â61 (Lunar and Planetary Institute, 1991).
Hunter, R. H. & Taylor, L. A. The magma ocean from the Fra Mauro shoreline: an overview of the Apollo 14 crust. J. Geophys. Res. Solid Earth 88, A591âA602 (1983).
James, O. B. & Flohr, M. K. Subdivision of the Mg-suite noritic rocks into Mg-gabbronorites and Mg-norites. J. Geophys. Res. Solid Earth 88, A603âA614 (1983).
Marti, K. et al. Pieces of the ancient lunar crust: ages and composition of clasts in consortium breccia 67915. J Geophys. Res. Solid Earth 88, B165âB175 (1983).
Nord, G. L. Jr & Wandless, M. V. Petrology and comparative thermal and mechanical histories of clasts in breccia 62236. J. Geophys. Res. Solid Earth 88, A645âA657 (1983).
Shervais, J. W., Taylor, L. A. & Laul, J. C. Ancient crustal components in the Fra Mauro breccias. J. Geophys. Res. Solid Earth 88, B177âB192 (1983).
Shervais, J. W., Taylor, L. A., Laul, J. C. & Smith, M. R. Pristine highland clasts in consortium breccia 14305: petrology and geochemistry. J. Geophys. Res. Solid Earth 89, C25âC40 (1984).
Ryder, G. in Workshop on the Geology of the Apollo 15 Landing Site (eds Spudis, P. D. & Ryder, G.) 41â45 (Lunar and Planetary Institute, 1985).
Laul, J. C. Chemistry of the Apollo 12 highland component. J. Geophys. Res. Solid Earth 91, 241â261 (1986).
James, O. B., Lindstrom, M. M. & Flohr, M. K. Petrology and geochemistry of alkali gabbronorites from lunar breccia 67975. J. Geophys. Res. Solid Earth 92, E314âE330 (1987).
James, O. B., Lindstrom, M. M. & Flohr, M. K. in Proc. 19th Lunar and Planetary Science Conference 219â243 (Cambridge Univ. Press/Lunar and Planetary Institute, 1989).
Marvin, U. B., Lindstrom, M. M., Bernatowicz, T. J., Podosek, F. A. & Sugiura, N. The composition and history of breccia 67015 from North Ray Crater. J. Geophys. Res. Solid Earth 92, E471âE490 (1987).
Simon, S. B., Papike, J. J., Laul, J. C., Hughes, S. S. & Schmitt, R. A. Apollo 16 regolith breccias and soils: recorders of exotic component addition to the Descartes region of the moon. Earth Planet. Sci. Lett. 89, 147â162 (1988).
Ryder, G. & Sherman, S. B. The Apollo 15 coarse fines (4â10 mm). NASA Technical Memorandum 19900005711 (1989).
Lindstrom, M. M., Marvin, U. B. & Mittlefehldt, D. W. in Proc. 19th Lunar and Planetary Science Conference 245â254 (Cambridge Univ. Press/Lunar and Planetary Institute, 1989).
Jolliff, B. L., Korotev, R. L. & Haskin, L. A. in Proc. 21st Lunar and Planetary Science Conference 193â219 (Lunar and Planetary Institute, 1991).
Norman, M. D. & Taylor, S. R. Geochemistry of lunar crustal rocks from breccia 67016 and the composition of the Moon. Geochim. Cosmochim. Acta 56, 1013â1024 (1992).
Snyder, G. A., Taylor, L. A., Liu, Y. G. & Schmitt, R. A. in Proc. 22nd Lunar and Planetary Science Conference 399â416 (Lunar and Planetary Institute, 1992).
Shih, C. Y. et al. Ages of pristine noritic clasts from lunar breccias 15445 and 15455. Geochim. Cosmochim. Acta 57, 915â931 (1993).
Jolliff, B. L. & Haskin, L. A. Cogenetic rock fragments from a lunar soil: evidence of a ferroan noritic-anorthosite pluton on the Moon. Geochim. Cosmochim. Acta 59, 2345â2374 (1995).
Norman, M. D., Keil, K., Griffin, W. L. & Ryan, C. G. Fragments of ancient lunar crust: petrology and geochemistry of ferroan noritic anorthosites from the Descartes region of the Moon. Geochim. Cosmochim. Acta 59, 831â847 (1995).
Norman, M. D., Borg, L. E., Nyquist, L. E. & Bogard, D. D. Chronology, geochemistry, and petrology of a ferroan noritic anorthosite clast from Descartes breccia 67215: clues to the age, origin, structure, and impact history of the lunar crust. Meteorit. Planet. Sci. 38, 645â661 (2003).
Hansen, E. C., Smith, J. V. & Steele, I. M. in Proc. 11th Lunar and Planetary Science Conference 523â533 (Pergamon Press, 1980).
Hollocher, K. NORM4 Excel spreadsheet programs to calculate petrologic norms from whole-rock chemical analyses. Zenodo https://doi.org/10.5281/zenodo.5818037 (2022).
Lucey, P. G., Blewett, D. T., Taylor, G. J. & Hawke, B. R. Imaging of lunar surface maturity. J. Geophys. Res. Planets 105, 20377â20386 (2000).
McEwen, A. S. in Proc. 27th Lunar and Planetary Science Conference 841 (Lunar and Planetary Institute, 1996).
Pieters, C. M. in Proc. Workshop on New Views of the Moon II: Understanding the Moon Through the Integration of Diverse Datasets 8025 (Lunar and Planetary Institute, 1999).