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磁性ナノ超構造の創製とスピンデバイスへの応用

机译:磁性纳米光学结构的创建和旋转装置的应用

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摘要

The development of magnetic nanosized superstructures and their application to spintronics devices are surveyed. The anomalous Nernst effect in perpendicularly magnetized ordered thin films was investigated to help with the development of a new type of thermoelectric power generation device. Results showed that the anomalous Nernst effect could be quantitatively discussed even in nanoscale devices from a simulation using the finite element method. The combination of perpendicularly magnetized FePt and Cr wires enhanced the anomalous Nernst voltage effectively. A novel metal-free large magnetic anisotropy ferromagnetic thin film "Llo ordered FeNi with a large uniaxial magnetic anisotropy was fabricated by an alternative monatomic layer deposition. The uniaxial magnetic anisotropy constant of an FeNi layer grown on a Au-Cu-Ni underlayer showed a large magnetic anisotropy (K_u=7.0 ×10~6 erg/cm~3). It is expected that optimizing the lattice constant of the underlayer will lead to increased uniaxial magnetic anisotropy of L1_0 ordered FeNi thin films.
机译:调查了磁性纳米结构的发展及其在闪光装置的应用中的应用。研究了在垂直的磁化有序薄膜中的异常NERNST效应,以帮助开发一种新型的热电发电装置。结果表明,即使在使用有限元方法的模拟中,也可以在纳米级器件中定量讨论异常的鼻塞效应。垂直磁化的缩放和Cr线的组合有效地增强了异常的内部电压。通过替代的解体层沉积制造了一种新的无金属大磁各向异性铁磁性薄膜“LLO有序的FENI,具有大的单轴磁各向异性。在Au-Cu-Ni底层中生长的Feni层的单轴磁各向异性常数显示出A.大磁各向异性(K_U = 7.0×10〜6 erg / cm〜3)。预计优化底层的晶格常数将导致L1_0有序的Feni薄膜的单轴磁各向异性增加。

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