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Jenniskens, P.* ; Fries, M.D.* ; Yin, Q.Z.* ; Zolensky, M.* ; Krot, A.N.* ; Sandford, S.A.* ; Sears, D.* ; Beauford, R.* ; Ebel, D.S.* ; Friedrich, J.M.* ; Nagashima, K.* ; Wimpenny, J.* ; Yamakawa, A.* ; Nishiizumi, K.* ; Hamajima, Y.* ; Caffee, M.W.* ; Welten, K.C.* ; Laubenstein, M.* ; Davis, A.M.* ; Simon, S.B.* ; Heck, P.R.* ; Young, E.D.* ; Kohl, I.E.* ; Thiemens, M.H.* ; Nunn, M.H.* ; Mikouchi, T.* ; Hagiya, K.* ; Ohsumi, K.* ; Cahill, T.A.* ; Lawton, J.A.* ; Barnes, D.* ; Steele, A.* ; Rochette, P.* ; Verosub, K.L.* ; Gattacceca, J.* ; Cooper, G.* ; Glavin, D.P.* ; Burton, A.S.* ; Dworkin, J.P.* ; Elsila, J.E.* ; Pizzarello, S.* ; Ogliore, R.* ; Schmitt-Kopplin, P. ; Harir, M. ; Hertkorn, N. ; Verchovsky, A.* ; Grady, M.* ; Nagao, K.* ; Okazaki, R.* ; Takechi, H.* ; Hiroi, T.* ; Smith, K.* ; Silber, E.A.* ; Brown, P.G.* ; Albers, J.* ; Klotz, D.* ; Hankey, M.* ; Matson, R.* ; Fries, J.A.* ; Walker, R.J.* ; Puchtel, I.* ; Lee, C.T.* ; Erdman, M.E.* ; Eppich, G.R.* ; Roeske, S.* ; Gabelica, Z.* ; Lerche, M.* ; Nuevo, M.* ; Girten, B.* ; Worden, S.P.* ; Sutter's Mill Meteorite Consortium

Radar-enabled recovery of the Sutter's Mill meteorite, a carbonaceous chondrite regolith breccia.

Science 338, 1583-1587 (2012)
Verlagsversion Volltext DOI
Open Access Green möglich sobald Postprint bei der ZB eingereicht worden ist.
Doppler weather radar imaging enabled the rapid recovery of the Sutter's Mill meteorite after a rare 4-kiloton of TNT-equivalent asteroid impact over the foothills of the Sierra Nevada in northern California. The recovered meteorites survived a record high-speed entry of 28.6 kilometers per second from an orbit close to that of Jupiter-family comets (Tisserand's parameter = 2.8 ± 0.3). Sutter's Mill is a regolith breccia composed of CM (Mighei)-type carbonaceous chondrite and highly reduced xenolithic materials. It exhibits considerable diversity of mineralogy, petrography, and isotope and organic chemistry, resulting from a complex formation history of the parent body surface. That diversity is quickly masked by alteration once in the terrestrial environment but will need to be considered when samples returned by missions to C-class asteroids are interpreted.
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Publikationstyp Artikel: Journalartikel
Dokumenttyp Wissenschaftlicher Artikel
Schlagwörter ICR-FT/MS; NMR; organic matter; meteorites; OXYGEN ISOTOPIC COMPOSITIONS; MURCHISON METEORITE; PARENT BODIES; TAGISH LAKE; FALL; METEOROIDS; ORIGIN; ACIDS
ISSN (print) / ISBN 0036-8075
e-ISSN 1095-9203
Zeitschrift Science
Quellenangaben Band: 338, Heft: 6114, Seiten: 1583-1587 Artikelnummer: , Supplement: ,
Verlag American Association for the Advancement of Science (AAAS)
Begutachtungsstatus