Department of Physics, Princeton University, Jadwin Hall, Princeton, NJ, 08544, USA.
Department of Geosciences, Princeton University, Guyot Hall, Princeton, NJ, 08544, USA.
Sci Rep. 2017 May 9;7(1):1637. doi: 10.1038/s41598-017-01445-5.
We report on a fragment of the quasicrystal-bearing CV3 carbonaceous chondrite Khatyrka recovered from fine-grained, clay-rich sediments in the Koryak Mountains, Chukotka (Russia). We show higher melting-point silicate glass cross-cutting lower melting-point Al-Cu-Fe alloys, as well as unambiguous evidence of a reduction-oxidation reaction history between Al-Cu-Fe alloys and silicate melt. The redox reactions involve reduction of FeO and SiO to Fe and Fe-Si metal, and oxidation of metallic Al to AlO, occurring where silicate melt was in contact with Al-Cu-Fe alloys. In the reaction zone, there are metallic Fe and Fe-Si beads, aluminous spinel rinds on the Al-Cu-Fe alloys, and AlO enrichment in the silicate melt surrounding the alloys. From this and other evidence, we demonstrate that Khatyrka must have experienced at least two distinct events: first, an event as early as 4.564 Ga in which the first Al-Cu-Fe alloys formed; and, second, a more recent impact-induced shock in space that led to transformations of and reactions between the alloys and the meteorite matrix. The new evidence firmly establishes that the Al-Cu-Fe alloys (including quasicrystals) formed in outer space in a complex, multi-stage process.
我们报告了一块来自俄罗斯楚科奇地区科里亚克山脉细粒富粘土沉积物中的含准晶体 CV3 碳质球粒陨石 Khatyrka 的碎片。我们发现了较高熔点的硅酸盐玻璃横穿较低熔点的 Al-Cu-Fe 合金,以及 Al-Cu-Fe 合金与硅酸盐熔体之间存在氧化还原反应历史的明确证据。这些氧化还原反应涉及到 FeO 和 SiO 的还原为 Fe 和 Fe-Si 金属,以及金属 Al 的氧化为 AlO,发生在硅酸盐熔体与 Al-Cu-Fe 合金接触的地方。在反应区,有金属 Fe 和 Fe-Si 珠,Al-Cu-Fe 合金上的铝尖晶石外壳,以及合金周围硅酸盐熔体中的 AlO 富集。从这一证据和其他证据中,我们证明 Khatyrka 一定经历了至少两个不同的事件:首先,早在 45.64 亿年前的一个事件中,第一批 Al-Cu-Fe 合金形成;其次,是一个更近期的、在太空中引发的冲击事件,导致了合金与陨石母体之间的转变和反应。新的证据确凿地证明了 Al-Cu-Fe 合金(包括准晶体)是在外太空复杂的多阶段过程中形成的。