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磁性半導体の新材料探索とスピントロニクスへの応用

机译:寻找磁性半导体的新材料及其在自旋电子学中的应用

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In this article, we review recent studies on diluted magnetic semiconductors (DMSs), in which magnetic impurities of either of transition-metal or rare-earth elements are incorporated into semiconductors, mainly focusing on the material search for high-temperature ferromagnetic semiconductors. Even after extensive studies on various DMSs over the past several decades, achieving room-temperature ferromagnetism as an intrinsic property sometimes remains elusive, even with a variety of experimental results of magnetism for the same material. In these situations, it is recognized that the presence or absence of phase separation is an important factor that dominates the magnetic properties, either in the form of precipitation of an extrinsic phase or of non-uniform distribution of magnetic impurities while keeping the coherent structure of the host crystal. We introduce recent studies on the respective materials of DMSs based on III-V, II-VI, IV-VI compounds, and group IV semiconductors, with an emphasis on the correlation between the phase separation and the observed magnetic properties.
机译:在本文中,我们回顾了有关稀磁半导体(DMS)的最新研究,其中过渡金属或稀土元素的磁性杂质都掺入了半导体中,主要集中在高温铁磁半导体的材料研究上。即使在过去几十年中对各种DMS进行了广泛研究之后,即使具有相同材料的磁性实验结果也很多,实现室温铁磁作为一种固有特性有时仍然遥不可及。在这些情况下,已经认识到相分离的存在或不存在是决定磁性的主要因素,无论是外在相的析出还是磁性杂质的不均匀分布,同时都保持了磁性的相干结构。宿主晶体。我们将介绍基于III-V,II-VI,IV-VI化合物和IV组半导体的DMS各自材料的最新研究,重点是相分离与观察到的磁性能之间的相关性。

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