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Static stress demagnetization of single and multidomain magnetite with implications for meteorite impacts

机译:单一和多麦田磁铁矿的静态应力退磁,具有陨石撞击的影响

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Stress demagnetization effects on ferromagnetic minerals are poorly known, especially above 1 GPa, and when initially magnetized under pressure and then subjected to further stress. Our experiments on pure magnetite under quasi-hydrostatic loads in the presence of a small (Earth's) field show that stress demagnetization depends on domain state and stress history. Viewed globally, the results follow a simple law where the percentage loss in magnetic moment is the inverse of pressure (e.g., 50percent loss in moment at 1 GPa, 67percent loss at 2 GPa, etc.). Our experiments also quantify the effect of demagnetization upon stress release, where the moment upon full decompression is two-thirds less than the moment when decompression first began. Given the magnitude of the stress demagnetization effect, we conclude that the presence or absence of a planetary magnetic field cannot be deduced from the magnetic fields measured over meteorite craters, such as those on Mars.
机译:对铁磁矿物的应激退磁作用是众所周知的,尤其是在1GPa以上,并且在最初在压力下磁化时,然后进行进一步的应力。我们在小(地球)字段存在下对准静水载荷下纯磁铁矿的实验表明应力退磁取决于领域状态和应力历史。在全球范围内观看,结果遵循简单的法律,其中磁矩损失百分比是压力的倒数(例如,在1GPa的时刻,2GPA的67%的损耗等)。我们的实验还量化了退磁剂对压力释放时的影响,在完全减压时的那一刻是第一次解压缩时少于瞬间的三分之二。鉴于应力退磁效果的幅度,我们得出结论,不能从在陨石陨石坑上测量的磁场推导出行星磁场的存在或不存在,例如火星上的磁场。

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