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The complex exposure histories of the Pitts and Horse Creek iron meteorites: Implications for meteorite delivery models

机译:匹兹堡和马溪铁陨石的复杂暴露历史:对陨石传递模型的启示

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The concentrations of cosmogenic radionuclides and noble gases in Pitts (IAB) and Horse Creek (ungrouped) provide unambiguous evidence that both irons have a complex exposure history with a first-stage irradiation of 100-600 Myr under high shielding, followed by a second-stage exposure of similar to 1 Myr as small objects. The first-stage exposure ages of similar to 100 Myr for Horse Creek and similar to 600 Myr for Pitts are similar to cosmic-ray exposure ages of other iron meteorites. and most likely represent the Yarkovsky orbital drift times of irons from their parent bodies in the main asteroid belt to one of the nearby chaotic resonance zones. The short second-stage exposure ages indicate that collisional debris front recent impact events oil their precursor objects was quickly delivered to Earth. The short delivery times suggests that the recent collision events Occurred while the precursor objects of Horse Creek and Pitts were either very close to the chaotic resonance zone,,; or already in Earth-crossing orbits. Since the cosmogenic noble gas records of Horse Creek and Pitts indicate a minimum radius of a few meters for the precursor objects, but do not exclude km-sized objects. we Conclude that these irons may represent Fragments of two near-Earth asteroids, 3103 Eger and 1986 DA, respectively. Finally, we used the cosmogenic nuclide concentrations in Horse Creek. which contains 2.5 wt% Si, to test Current model calculations for the production of cosmogenic Be-10, Al-26, and neonisotopes from iron, nickel, and silicon.
机译:皮兹(IAB)和马溪(未分组)中的宇宙成因放射性核素和稀有气体的浓度提供了明确的证据,证明这两种铁都具有复杂的暴露历史,在高屏蔽下的第一阶段辐射为100-600 Myr,然后第二阶段阶段曝光类似于1 Myr的小物体。 Horse Creek的第一阶段暴露年龄与Pitts接近600 Myr,与其他铁陨石的宇宙射线暴露年龄相似。最有可能代表铁在主要小行星带中从其母体到附近混沌共振区之一的Yarkovsky轨道漂移时间。第二阶段较短的暴露年龄表明,碰撞碎片在最近的撞击事件中使它们的前体物体上油,很快就将其运送到了地球。短的传递时间表明,最近的碰撞事件发生在Horse Creek和Pitts的前兆物体非常接近混沌共振区的时候;或已经在穿越地球的轨道上。由于Horse Creek和Pitts的宇宙成因稀有气体记录表明,前体物体的最小半径为几米,但不排除千米大小的物体。我们认为这些铁可能分别代表了两个近地小行星3103 Eger和1986 DA的碎片。最后,我们使用了马溪中的宇宙成因核素浓度。包含2.5 wt%的Si,以测试当前模型计算,以从铁,镍和硅中生产具有宇宙性的Be-10,Al-26和新镍同位素。

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