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From flow to quarry: Magnetic properties of obsidian and changing the scale of archaeological sourcing

机译:从流动到采石场:黑曜石的磁性和不断变化的考古来源

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摘要

Previous studies have endeavored to use petrophysical traits of obsidian, particularly its magnetic properties, as an alternative to conventional geochemical sourcing, one of the greatest successes in archaeological science. Magnetic approaches, however, have not seen widespread application due to their mixed successes. In a time when geochemical analyses can be conducted non-destructively, in the field, and in a minute or two, magnetic measurements of obsidian must offer novel archaeological insights to be worthwhile, not merely act as a less successful version of geochemistry. To this end, we report the findings of our large-scale study of obsidian magnetism, which includes 734 geological obsidian specimens and 97 artifacts measured for six simple magnetic parameters. Based on our results, we propose, rather than using magnetic properties to source artifacts to a particular obsidian flow (inter-flow sourcing), these properties are best used to differentiate quarrying sites within an individual flow (intra-flow sourcing). Our results also demonstrate that certain magnetic properties are highly affected by ancient knappers' material selection criteria. Furthermore, depending on the spatial scales of variation, which likely vary from flow to flow, we envision several potential applications of this approach, including integration into minimum analytical nodule analysis (MANA). Magnetic data appear to shift the scale of obsidian sourcing from flows to quarries and, in turn, enable new insights into raw-material procurement strategies, group mobility, lithic technology, and the organization of space and production.
机译:以前的研究已经尝试使用黑曜石的岩石物理特征,特别是其磁性,来替代常规地球化学来源,这是考古科学上最大的成功之一。然而,由于磁学方法的成功与否,因此尚未得到广泛应用。在地球化学分析可以在野外,在一两分钟内进行无损分析的时代,黑曜石的磁性测量必须提供新颖的考古学见识,以值得研究,而不仅仅是作为地球化学的较不成功的版本。为此,我们报告了大规模黑曜石磁性研究的结果,该研究包括734个地质黑曜石标本和针对六个简单磁性参数测量的97个文物。根据我们的研究结果,我们建议不要使用磁性属性将伪像提供给特定的黑曜石流(流间源),而最好使用这些属性来区分单个流内的采石场(流内源)。我们的结果还表明,某些磁性特性受到古代敲击者材料选择标准的高度影响。此外,根据变化的空间尺度(可能随流量的变化而变化),我们设想了此方法的几种潜在应用,包括集成到最小分析结节分析(MANA)中。磁性数据似乎将黑曜石的采购规模从流程转移到了采石场,从而使人们对原材料的采购策略,团队流动性,石板技术以及空间和生产的组织有了新的见解。

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