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Electrical effects of spin density wave quantization and magnetic domain walls in chromium

机译:铬中自旋密度波量化和磁畴壁的电效应

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The role of magnetic domains (and the walls between domains) in determining the electrical properties of ferromagnetic materials has been investigated in great detail for many years, not least because control over domains offers a means of manipulating electron spin to control charge transport in 'spintronic' devices. In contrast, much less attention has been paid to the effects of domains and domain walls on the electrical properties of antifer-romagnets: antiferromagnetic domains show no net external magnetic moment, and so are difficult to manipulate or probe. Here we describe electrical measurements on chromium-a simple metal and quintessential spin density wave antiferromagnet-that show behaviour directly related to spin density wave formation and the presence of antiferromagnetic domains. Two types of thermal hysteresis are seen in both longitudinal and Hall resistivity: the first can be explained by the quantization of spin density waves due to the finite film thickness (confirmed by X-ray diffraction measurements) and the second by domain-wall scattering of electrons. We also observe the striking influence of the electrical lead configuration (a mesoscopic effect) on the resistivity of macroscopic samples in the spin density wave state. Our results are potentially of practical importance, in that they reveal tunable electrical effects of film thickness and domain walls that are as large as the highest seen for ferromagnets.
机译:多年来,对磁畴(以及畴之间的壁)在确定铁磁材料的电性能中的作用进行了详尽的研究,这不仅是因为对磁畴的控制提供了一种操纵电子自旋以控制'spintronic中的电荷传输的方法' 设备。相比之下,磁畴和磁畴壁对反铁磁体的电性能的影响却很少受到关注:反铁磁畴没有净外部磁矩,因此难以操纵或探测。在这里,我们描述了对铬的电学测量-一种简单的金属和典型的自旋密度波反铁磁体-显示了与自旋密度波形成和反铁磁畴的存在直接相关的行为。纵向和霍尔电阻率都有两种类型的热滞现象:第一种可以通过有限的膜厚(通过X射线衍射测量确定)导致的自旋密度波的量化来解释,第二种可以通过磁畴壁散射来解释。电子。我们还观察到自旋密度波状态下,电引线结构(介观效应)对宏观样品电阻率的显着影响。我们的结果可能具有实际意义,因为它们揭示了膜厚度和畴壁的可调电效应,该效应与铁磁体所见的最大一样大。

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  • 来源
    《Nature》 |2008年第7189期|共页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:55:52

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