期刊文献+

Carbon-based spintronics 被引量:1

Carbon-based spintronics
原文传递
导出
摘要 Carbon-based spintronics refers mainly to the spin injection and transport in carbon materials including carbon nanotubes,graphene,fullerene,and organic materials.In the last decade,extraordinary development has been achieved for carbon-based spintronics,and the spin transport has been studied in both local and nonlocal spin valve devices.A series of theoretical and experimental studies have been done to reveal the spin relaxation mechanisms and spin transport properties in carbon materials,mostly for graphene and carbon nanotubes.In this article,we provide a brief review on spin injection and transport in graphene,carbon nanotubes,fullerene and organic thin films. Carbon-based spintronics refers mainly to the spin injection and transport in carbon materials including carbon nanotubes, graphene, fullerene, and organic materials. In the last decade, extraordinary development has been achieved for carbon-based spintronics, and the spin transport has been studied in both local and nonlocal spin valve devices. A series of theoretical and experimental studies have been done to reveal the spin relaxation mechanisms and spin transport properties in carbon materials, mostly for graphene and carbon nanotubes. In this article, we provide a brief review on spin injection and transport in graphene, carbon nanotubes, fullerene and organic thin films.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第1期207-221,共15页 中国科学:物理学、力学、天文学(英文版)
基金 supported by the National Basic Research Program of China(Grant Nos. 2013CB934500 and 2012CB921302) the National Natural Science Foundation of China (Grant No. 91223204) the "100 Talents Project" of Chinese Academy of Sciences
关键词 CARBON SPINTRONICS spin injection spin transport spin valve 自旋电子学 碳基 碳纳米管 自旋注入 有机材料 自旋输运 输运特性 自旋弛豫
  • 相关文献

参考文献101

  • 1Johnson M, Silsbee R H. Interficial charge-spin couplin - injection and detection of spin magnetization in metals. Phys Rev Lett, 1985, 55(17): 1790-1793.
  • 2Baumberg J J, Awschalom D D, Samarth Net al. Spin beats and dynamical magnetization in quantum structures. Phys Rev Lett, 1994, 72(5): 717-720.
  • 3Lou X H, Awschalom D D, Samarth N, et al. Electrical detection of spin transport in lateral ferromagnet-semiconductor devices. Nat Phys, 2007, 3(3): 197-202.
  • 4Tsukagoshi K, Alphenaar B W, Ago H. Coherent transport of electron spin in a ferromagnetically contacted carbon nanotube. Nature, 1999, 401 (6753): 572-574.
  • 5Zhao B, Monch I, Vinzelberg H, et al. Spin-coherent transport in ferromagnetically contacted carbon nanotubes. Appl Phys Lett, 2002, 80(17): 3144-3146.
  • 6Kim J R, So H M, Kim J J, et al. Spin-dependent transport properties in a single-walled carbon nanotube with mesoscopic Co contacts. Phys Rev B, 2002, 66(23): 233401.
  • 7Krompiewski S. Spin-polarized transport through carbon nanotubes. Physica Status Solidi B-Basic Solid State Phys, 2005, 242(2): 226- 233.
  • 8Hill E W, Geim A K, Novoselov K, et al. Graphene spin valve devices. IEEE Trans Magn, 2006, 42(10): 2694-2696.
  • 9Tombros N, Jozsa C, Popinciuc M, et al. Electronic spin transport and spin precession in single graphene layers at room temperature. Nature, 2007, 448(7153): 571-574.
  • 10Cho S J, Chen Y F, Fuhrer M S. Gate-tunable graphene spin valve. Appl Phys Lett, 2007, 91(12): 123105.

同被引文献4

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部