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Aluminum-26 chronology of dust coagulation and early solar system evolution

机译:Al-26尘埃凝结和太阳系早期演化的年代

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Dust condensation and coagulation in the early solar system are the first steps toward forming the terrestrial planets, but the time scales of these processes remain poorly constrained. Through isotopic analysis of small Ca-Al–rich inclusions (CAIs) (30 to 100 μm in size) found in one of the most pristine chondrites, Allan Hills A77307 (CO3.0), for the short-lived sup26/supAl-sup26/supMg [ t sub1/2/sub = 0.72 million years (Ma)] system, we have identified two main populations of samples characterized by well-defined sup26/supAl/sup27/supAl = 5.40 (±0.13) × 10sup?5/sup and 4.89 (±0.10) × 10sup?5/sup. The result of the first population suggests a 50,000-year time scale between the condensation of micrometer-sized dust and formation of inclusions tens of micrometers in size. The 100,000-year time gap calculated from the above two sup26/supAl/sup27/supAl ratios could also represent the duration for the Sun being a class I source.
机译:早期太阳系中的尘埃凝结和凝结是形成地球行星的第一步,但是这些过程的时间尺度仍然受到严格限制。通过同位素分析,发现对于寿命最短的 26 26>,在最原始的球粒陨石之一中,Allan Hills A77307(CO3.0)发现了富含Ca-Al的小夹杂物(CAI)(尺寸为30至100μm)。 / sup> Al- 26 Mg [t 1/2 = 72万年(Ma)]系统,我们确定了两个主要的样本群,其特征是定义明确的< sup> 26 Al / 27 Al = 5.40(±0.13)×10 ?5 和4.89(±0.10)×10 ?5 。第一批人口的结果表明,在微米级灰尘的凝结与数十微米大小的夹杂物形成之间,有一个50,000年的时间尺度。根据上述两个 26 Al / 27 Al比率计算出的100,000年时间间隔也可以代表太阳作为I类源的持续时间。

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