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首页> 外文期刊>Journal of Physics. Condensed Matter >Nanospintronics: when spintronics meets single electron physics
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Nanospintronics: when spintronics meets single electron physics

机译:纳米自旋电子学:自旋电子学与单电子物理学相遇

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As spintronics goes nano, new phenomena are predicted resulting from the interplay between spin dependent transport and single electron physics. The long term goal of manipulating spins one by one would open a promising path to quantum computing. Towards this end, there is an ever-growing effort to connect spin tanks (i.e. ferromagnetic leads) to smaller and smaller objects in order to study spintronics in reduced dimensions. As the dimensions are reduced, spin dependent transport is predicted to interplay with quantum and/or single electron charging effects. We review experiments and theories on the interplay between Coulomb blockade and spin properties (namely magneto-Coulomb effects) in structures where a single nano-object is connected to ferromagnetic leads. We then discuss briefly future directions in the emerging field of nanospintronics towards quantum dots, carbon nanotubes and single molecule magnets.
机译:随着自旋电子学走向纳米,人们预言了自旋相关输运与单电子物理学之间相互作用的新现象。逐一操纵自旋的长期目标将为量子计算开辟一条有希望的道路。为此,为了研究尺寸减小的自旋电子学,人们越来越努力地将自旋槽(即铁磁引线)连接到越来越小的物体上。随着尺寸的减小,预计自旋依赖性传输将与量子和/或单电子带电效应相互作用。我们回顾了关于在单个纳米物体与铁磁引线相连的结构中库仑阻滞和自旋特性(即磁库仑效应)之间相互作用的实验和理论。然后,我们简要讨论了纳米自旋电子学的新兴领域对量子点,碳纳米管和单分子磁体的未来发展方向。

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