Lunar Meteorite: Allan Hills A81005
Listed in The Meteoritical Bulletin, No. 76, Meteoritics 29, 100-143 (1994) From Antarctic Meteorite Newsletter, Vol. 6, No. 1, February (1983) Allan Hills A81005 (ALHA81005)Allan Hills, Transantarctic Mountains, Antarctica Classification: Anorthositic Breccia Physical Description: Roberta Score. This is an unusual looking sample! Flow marks are apparent on the exterior which is covered with a pitted, glassy, greenish-tan colored crust. Immediately underneath this crust, the surface is a “dusty” gray color. The interior consists of abundant angular clasts, which range in color from gray to white, set in a black matrix. The size of the clasts are as small as submillimeter and as large as 8 mm in diameter. The sample is very coherent. Some areas of oxidation were noted. Dimensions: 3 x 2.5 x 3 cm. Petrographic Description: Brian Mason. The specimen is a microbreccia of clasts (maximum dimension 4 mm) in a translucent to semi-opaque dark brown glassy matrix showing flow structure in places; clast:matrix ratio is approximately 40:60. The larger clasts are polymineralic, the smaller (less than 0.3 mm) may be individual mineral grains. The clasts consist largely of plagioclase, together with some pyroxene and occasional olivine; most of the mineral grains are plagioclase. The clasts show a variety of textures, including gabbroic, diabasic, and basaltic; many have been shocked and partly granulated. Some of the clasts resemble eucrites, but many appear to be more feldspathic than most eucrites. The section is notable for the complete absence of opaque minerals, except for a 1 mm metal grain. Microprobe analyses show that the plagioclase is very Ca-rich, averaging An97 (range An95-98); pyroxene is variable in composition, Wo1-41, En44-79, Fs7-47 (richer in En than most eucrite pyroxenes); several grains of olivine, Fa11-40, were analyzed. The meteorite is a breccia, but more feldspathic than most eucrites; some of the clasts resemble the anorthositic clasts described from lunar rocks. |
Randy Says… Allan Hills A81005 is the first meteorite to be recognized as originating from the Moon. It was suspected to be lunar in the field and when first examined in the lab (above). After many studies (below) it was proven to be of lunar origin in the spring of 1983, a little over 10 years after the last Apollo mission to the Moon. |
More InformationMeteoritical Bulletin DatabaseAllan Hills A81005 Lunar Meteorite CompendiumMapReferencesBogard D. D. (1983) A meteorite from the Moon. Geophysical Research Letters 10, 773. Bogard D. D. and Johnson P. (1983) Trapped solar gases in the ALHA81005 lunar(?) meteorite. Lunar and Planetary Science XIV, Abstracts from the Session on Meteorites from Earth’s Moon, p. 1-2, abstract #6001. Bogard D. D. and Johnson P. (1983) Trapped noble gases indicate lunar origin for Antarctic meteorite. Geophysical Research Letters 10, 801-803. Boynton W. V. and Hill D. H. (1983) Minor and trace elements in clast and whole rock samples of Allan Hills A81005. Lunar and Planetary Science XIV, Abstracts from the Session on Meteorites from Earth’s Moon, p. 3-4, abstract #6002. Boynton W. V. and Hill D. H. (1983) Composition of bulk fragments and a possible pristine clast from Allan Hills A81005. Geophysical Research Letters 10, 837-840. Brum J. T., McLeod C. L., Gawronska A., Shaulis B., Duley M., Edelmann R., and M. Loocke (2019) Early lunar chronology: insights from Allan Hills (ALHA) 81005 meteorite (abstract). 50th Lunar and Planetary Science Conference, abstract no. 2012. Brum J. T., McLeod C. L., Shaulis B., Duley M., and Loocke M. (2020) Investigating the history of Allan Hills (ALHA) 81005: What a meteorite’s components can tell us about it’s past. 51st Lunar and Planetary Science Conference, abstract no. 2919. Calzada-Diaz A., Joy K. H., Crawford I. A., and Nordheim T. A. (2015) Constraining the source regions of lunar meteorites using orbital geochemical data. Meteoritics & Planetary Science 50, 214-228. Chen J. H. and Wasserburg G. J. (1985) U-Th isotopic studies on meteorite ALHA81005 and Ibitira. 14th Lunar and Planetary Science Conference, 119–120. Delano J. W. (1990) Constraints on the highlands source-area of lunar meteorite ALHA 81005 using chemical compositions of glasses. Lunar and Planetary Science XXI, 276-277. 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