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Remanence anisotropy effect on the palaeointensity results obtained from various archaeological materials, excluding pottery

机译:剩余各向异性对从各种考古材料(不包括陶器)获得的古强度结果的影响

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The effect of magnetic anisotropy on the palaeointensity results has been evaluated in different materials. including samples from archaeological Structures of various ages, Such as baked clay from prehistoric domestic ovens or pottery kilns, burnt soil from ancient fires, and bricks and bricks or tiles used in the kiln's construction. The remanence anisotropy was estimated by the thermoremanent (TRM) anisotropy tensor and isothermal remanence (IRM) tensor methods. The small anisotropy effect (less than 5%) observed in the palaeointensity results of baked clay from the relatively thin prehistoric oven's floors estimated previously through IRM anisotropy was confirmed by TRM anisotropy of this material. The new results demonstrate the possibility of using IRM anisotropy evaluation to correct baked clay palaeointensity data instead of the more difficult to determine TRM anisotropy ellipsoid. This is not always the case for the palaeointensity results from bricks and tiles. The anisotropy correction to palaeointensity results seems negligible for materials other than pottery. It would therefore appear that the palaeointensity determination is more sensitive to the degree of remanence anisotropy P and the angle between the natural remanent magnetization (NRM) vector and the laboratory field direction, than to the angle between the NRM and the maximum axis of the remanence anisotropy ellipsoid (K-max).
机译:磁性各向异性对古强度结果的影响已在不同材料中进行了评估。包括来自不同时代的考古结构的样本,例如史前家用烤箱或陶窑中的烤制粘土,古代大火中的烧过的土壤以及窑炉中所用的砖瓦。剩磁各向异性通过热剩磁各向异性张量和等温剩磁张量方法估算。这种材料的TRM各向异性证实了以前通过IRM各向异性估算的,相对较薄的史前烤箱底板的烤制粘土的古强度结果中观察到的较小的各向异性效应(小于5%)。新结果表明,有可能使用IRM各向异性评估来校正烘烤的粘土古强度数据,而不是更难确定TRM各向异性椭球。对于砖块和砖块产生的古强度而言,情况并非总是如此。对古强度结果的各向异性校正对于陶器以外的其他材料似乎可以忽略不计。因此,看来古强度确定对剩磁各向异性度P和自然剩磁强度(NRM)矢量与实验室磁场方向之间的角度比对NRM和剩磁最大轴之间的角度更敏感各向异性椭圆体(K-max)。

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