自旋电子学
自旋晶体管
数码产品
自旋等离子体光子学
旋转泵
旋转
自旋极化
纳米技术
自旋(空气动力学)
半导体
工程物理
电气工程
自旋工程
计算机科学
物理
自旋霍尔效应
材料科学
工程类
电子
凝聚态物理
机械工程
量子力学
铁磁性
作者
Stefan Wolf,D. D. Awschalom,R. A. Buhrman,J.M. Daughton,S. von Molnár,M. L. Roukes,Almadena Chtchelkanova,Daryl Treger
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2001-11-16
卷期号:294 (5546): 1488-1495
被引量:10769
标识
DOI:10.1126/science.1065389
摘要
This review describes a new paradigm of electronics based on the spin degree of freedom of the electron. Either adding the spin degree of freedom to conventional charge-based electronic devices or using the spin alone has the potential advantages of nonvolatility, increased data processing speed, decreased electric power consumption, and increased integration densities compared with conventional semiconductor devices. To successfully incorporate spins into existing semiconductor technology, one has to resolve technical issues such as efficient injection, transport, control and manipulation, and detection of spin polarization as well as spin-polarized currents. Recent advances in new materials engineering hold the promise of realizing spintronic devices in the near future. We review the current state of the spin-based devices, efforts in new materials fabrication, issues in spin transport, and optical spin manipulation.
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