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Paleomagnetic investigation of rhyolite lava: Is rhyolite with clearly marked flow structure a high-fidelity geomagnetic field recorder?

机译:流纹岩熔岩的古磁研究:流纹清晰,流结构清晰的高纯地磁场记录仪吗?

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Rhyolite is a common volcanic rock; however, few studies have focused on the remanent magnetization of rhyolite lava, and few paleomagnetic studies have successfully investigated rhyolite lavas. We suspect that problems associated with paleomagnetic studies of rhyolite may be due to the nearly ubiquitous flow structure in rhyolite lava. In this study, we examined a thick rhyolite lava flow with clearly marked flow structure to assess its ability to record a consistent paleomagnetic direction, using material penetrated by two drill cores. Progressive thermal demagnetization isolated two magnetization components. A high-temperature component from each of the two cores yields inclinations that differ from each other. The low-temperature component had those that agreed with each other, and were also consistent with the direction expected from a geocentric axial dipole field. The modification of direction of the high-temperature component may be explained by post-magnetization acquisition tilting. The development of flow structure also leads to distortion of directions of the component, which is observed at stratigraphic positions where the volume fraction of light-colored parts of the flow structure >30%. In the case of silicic lava, the low-temperature component may retain directions parallel to the ambient field direction at the time of lava emplacement.
机译:流纹岩是一种常见的火山岩。然而,很少有研究关注流纹岩熔岩的剩余磁化,而很少有古磁研究成功地研究了流纹岩熔岩。我们怀疑与流纹岩古磁研究有关的问题可能是由于流纹岩熔岩中几乎无处不在的流动结构所致。在这项研究中,我们检查了稠密的流纹岩熔岩流,具有明显标记的流动结构,以评估其使用两个钻芯穿透的材料记录一致的古磁方向的能力。渐进式热消磁隔离了两个磁化分量。来自两个芯中的每个芯的高温成分产生的倾斜度互不相同。低温分量具有彼此一致的分量,并且也与地心轴向偶极子场的预期方向一致。可以通过后磁化获取倾斜来解释高温分量的方向的改变。流动结构的发展还导致组件方向的变形,这在流动结构的浅色部分的体积分数> 30%的地层位置可以观察到。在硅质熔岩的情况下,低温成分可能会在熔岩放置时保持与周围环境方向平行的方向。

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