使用 CoFeB 和 Fe3Sn 合成基于反铁磁体的双自旋约瑟夫森结中的多频率阶跃

Md. Rakibul Karim Akanda
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引用次数: 0

摘要

超导量子干涉装置(SQUID)由两个平行的约瑟夫森结组成,可应用于磁测量领域。这里提出了一种类似的基于自旋的设备,即在铁磁体(FM)中模拟超导状态的自旋超流体。CoFeB 和 Fe3Sn 两种材料被用于基于自旋超流体的 SQUID 类似装置,其中 CoFeB 易于平面各向异性设计,而 Fe3Sn 具有固有的易于平面各向异性。基于自旋的拟议器件的频率各不相同。频率随着外加磁场和外加自旋电流的增加而增加,然后又随着外加磁场和外加自旋电流的增加而降低。该器件可用作纳米振荡器和探测器。拟议器件中的频率显示出多个频率阶跃,可用于神经形态应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple frequency steps in synthetic antiferromagnet based double spin josephson junctions using CoFeB and Fe3Sn
Superconducting quantum interference device (SQUID) which is made of two parallel Josephson junctions has applications in magnetometry. A similar spin-based device is proposed here where spin superfluid in ferromagnet (FM) mimics the superconducting state. Two materials CoFeB and Fe3Sn are used for spin superfluid-based SQUID like device where easy plane anisotropy in CoFeB can be engineered and Fe3Sn has inherent easy plane anisotropy. Frequency varies in spin based proposed devices. Frequency increases and again decreases with the increase in both applied magnetic field and applied spin current. The proposed device can be used as nano oscillator and detector. The frequency in the proposed device shows multiple frequency steps which can be used for neuromorphic applications.
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