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Change in the microhardness of nonmagnetic crystals after their exposure to the Earth's magnetic field and AC pump field in the EPR scheme

机译:EPR方案中非磁性晶体暴露于地球磁场和交流泵浦场后的显​​微硬度变化

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Changes in the microhardness of ZnO, triglycine sulfate (TGS), and potassium acid phthalate (KAP) crystals after their exposure to crossed ultralow magnetic fields, i.e., the Earth's field B _(Earth) ≈ 50 μT and the alternating-current field B? ≈ 3 μT orthogonal to it, have been revealed. In ZnO crystals, the microhardness increases, whereas in TGS and KAP, it decreases. A maximum change (10-15%) is reached within 1-3 h after magnetic treatment; then, the microhardness gradually recovers to its initial value for the first day. After a sufficient pause, the effect is completely reproduced under the same conditions. The resonant frequency of the pump field B? corresponds to the EPR condition with a g-factor close to two. The magnetic memory exhibits a strong anisotropy: for each of the crystals, a direction is found, which, being coincident with the Earth's magnetic field vector B _(Earth), causes complete or partial suppression of the effect. In ZnO and TGS crystals, these are symmetry axes 6 and 2, respectively. In the KAP crystal, it is the direction in the cleavage plane orthogonal the 2 axis. Possible physical mechanisms of the observed phenomena have been discussed.
机译:ZnO,硫酸三甘氨酸(TGS)和邻苯二甲酸钾酸钾(KAP)晶体在交叉超低磁场(即地球场B _(地球)≈50μT和交流场B ?与之正交的≈3μT。在ZnO晶体中,显微硬度增加,而在TGS和KAP中,显微硬度降低。磁处理后1-3小时内达到最大变化(10-15%);然后,第一天的显微硬度逐渐恢复到其初始值。足够的停顿后,效果将在相同条件下完全再现。泵浦场的共振频率B 1。对应于EPR条件,其g因子接近2。磁存储器表现出很强的各向异性:对于每个晶体,都找到一个方向,该方向与地球磁场矢量B _(Earth)一致,从而完全或部分地抑制了这种效应。在ZnO和TGS晶体中,它们分别是对称轴6和2。在KAP晶体中,它是在与2轴正交的分裂平面中的方向。已经讨论了观察到的现象的可能物理机制。

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