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Origin of false components of NRM during conventional stepwise thermal demagnetization

机译:常规逐步热退磁期间NRM的假组分的起源

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Many Permian-Triassic dolerite samples from the Siberian Trap Large Igneous Province exposed to conventional stepwise thermal demagnetization at 250-450 degrees C display mid-temperature remanence (MTC) directed opposite to the high-temperature NRM component. Alternating field (A.C.) demagnetization fails to isolate the antipodal component, but it appears during continuous thermal demagnetization, though in a different temperature range. Laboratory experiments and simulations prove that MTC remanence is an artifact resulting from magnetic memory of self-reversing titanomagnetite grains oxidized at low temperature. This effect can deform the results stepwise thermal cleaning and be responsible for misleading patterns of paleomagnetic directions. Given that oxidized titanomagnetite grains are widespread in volcanic rocks, we suggest to identify true paleodirections by combined continuous and stepwise thermal demagnetization. The extension of our model to the case of NRM2 overprint directed at some angle to partially reversed primary NRM1 component accounts for the difference between the results of stepwise and continuous thermal demagnetization observed in samples of the Steens Mountain basalt (USA). (C) 2017, V.S. Sobolev IGM, Siberian Branch of the RAS. Published by Elsevier B.V. All rights reserved.
机译:来自西伯利亚陷阱的许多二叠系三叠系潮流样品大型火成省暴露于常规逐步热退磁,在250-450摄氏度下显示与高温NRM组分相对的中温再现(MTC)。交替字段(A.C.)去磁性未能分离脱叠组分,但在连续热退磁时出现在不同的温度范围内。实验室实验和模拟证明了MTC剩磁是由在低温下氧化的自反转二氧化钛晶粒的磁记忆产生的伪影。这种效果可以逐步热清洗结果,并负责旧磁性方向的误导性图案。鉴于氧化的钛磁磁场谷物在火山岩中普遍存在,我们建议通过连续和逐步的热退磁来识别真正的古二元。我们的模型延伸到NRM2叠印的情况,以某种角度指向部分反转的主要NRM1分量占阶梯山玄武岩(美国)样本中观察到的逐步和连续热退磁结果之间的差异。 (c)2017,五。 Sobolev IgM,Ras的西伯利亚分支。 elsevier b.v出版。保留所有权利。

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