Department of Earth and Space Sciences, University of California, Los Angeles, CA 90095, USA.
Proc Natl Acad Sci U S A. 2012 Aug 21;109(34):13486-92. doi: 10.1073/pnas.1208006109. Epub 2012 Aug 6.
Few terrestrial localities preserve more than a trace lithic record prior to ca. 3.8 Ga greatly limiting our understanding of the first 700 Ma of Earth history, a period inferred to have included a spike in the bolide flux to the inner solar system at ca. 3.85-3.95 Ga (the Late Heavy Bombardment, LHB). An accessible record of this era may be found in Hadean detrital zircons from the Jack Hills, Western Australia, in the form of μm-scale epitaxial overgrowths. By comparing crystallization temperatures of pre-3.8 Ga zircon overgrowths to the archive of zircon temperature spectra, it should, in principle, be possible to identify a distinctive impact signature. We have developed Ti-U-Th-Pb ion microprobe depth profiling to obtain age and temperature information within these zircon overgrowths and undertaken a feasibility study of its possible use in identifying impact events. Of eight grains profiled in this fashion, four have overgrowths of LHB-era age. Age vs. temperature profiles reveal a period between ca. 3.85-3.95 Ga (i.e., LHB era) characterized by significantly higher temperatures (approximately 840-875 °C) than do older or younger zircons or zircon domains (approximately 630-750 °C). However, temperatures approaching 900 °C can result in Pb isotopic exchange rendering interpretation of these profiles nonunique. Coupled age-temperature depth profiling shows promise in this role, and the preliminary data we report could represent the first terrestrial evidence for impact-related heating during the LHB.
在大约 38 亿年前,很少有陆地地点保存了超过微量的石器记录,这极大地限制了我们对地球历史前 7 亿年的理解,这一时期被推断在内太阳系的陨石通量在大约 38.5-3.95 亿年前(晚期重轰炸期,LHB)有所增加。在西澳大利亚州的 Jack Hills 的 Hadean 碎屑锆石中,可以以 μm 级的外延生长形式找到这一时期的可访问记录。通过将 pre-3.8 Ga 锆石增生的结晶温度与锆石温度谱的档案进行比较,原则上应该有可能确定一个独特的撞击特征。我们已经开发了 Ti-U-Th-Pb 离子探针深度剖析技术,以在这些锆石增生中获取年龄和温度信息,并对其在识别撞击事件中的可能用途进行了可行性研究。在这种方式下,有 8 个晶粒进行了剖析,其中 4 个具有 LHB 时代的增生。年龄与温度剖面显示,在大约 3.85-3.95 亿年前(即 LHB 时期),温度明显较高(约 840-875°C),而不是较老或较年轻的锆石或锆石域(约 630-750°C)。然而,接近 900°C 的温度会导致 Pb 同位素交换,从而使这些剖面的解释变得不唯一。耦合的年龄-温度深度剖析在这方面显示出了前景,我们报告的初步数据可能代表了 LHB 期间与撞击相关的加热的第一个陆地证据。