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Ferromagnetic behaviour in semiconductors: a new magnetism in search of spintronic materials

机译:半导体中的铁磁行为:寻找自旋电子材料的新磁性

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The future of the spintronic technology requires the development of magnetic semiconductor materials. Most research groups have focused on diluted magnetic semiconductors because of the promising theoretical predictions and initial results. In this work, the current experimental situation of ZnO based diluted magnetic semiconductors is presented. Recent results on unexpected ferromagnetic-like behaviour in different nanostructures are also revised, focusing on the magnetic properties of Au and ZnO nanoparticles capped with organic molecules. These experimental observations of magnetism in nanostructures without the typical magnetic atoms are discussed. The doubts around the intrinsic origin of ferromagnetism in diluted magnetic semiconductors along with the surprising magnetic properties in absence of the typical magnetic atoms of certain nanostructures should make us consider new approaches in the quest for room temperature magnetic semiconductors.
机译:自旋电子技术的未来需要开发磁性半导体材料。由于有希望的理论预测和初步结果,大多数研究小组都将注意力集中在稀释的磁性半导体上。在这项工作中,介绍了基于ZnO的稀磁半导体的实验现状。还修订了有关在不同纳米结构中出乎意料的类似铁磁行为的最新结果,重点关注了被有机分子覆盖的Au和ZnO纳米颗粒的磁性。讨论了没有典型磁性原子的纳米结构中磁性的这些实验观察结果。围绕稀磁半导体中铁磁性的内在起源的疑问,以及在缺乏某些纳米结构的典型磁性原子的情况下令人惊讶的磁性能,应使我们考虑寻求室温磁半导体的新方法。

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