期刊文献+

The effects of electric and magnetic fields on the current spin polarization and magnetoresistance in a ferromagnetic/organic semiconductor/ferromagnetic(FM/OSC/FM) system 被引量:1

The effects of electric and magnetic fields on the current spin polarization and magnetoresistance in a ferromagnetic/organic semiconductor/ferromagnetic(FM/OSC/FM) system
下载PDF
导出
摘要 From experimental results of spin polarized injection and transport in organic semiconductors(OSCs),we theoretically study the current spin polarization and magnetoresistance under an electric and a magnetic field in a ferromagnetic/organic semiconductor/ferromagnetic(FM/OSC/FM) sandwich structure according to the spin drift-diffusion theory and Ohm's law.From the calculations,it is found that the interfacial current spin polarization is enhanced by several orders of magnitude through tuning the magnetic and electric fields by taking into account the specific characteristics of OSC.Furthermore,the effects of the electric and magnetic fields on the magnetoresistance are also discussed in the sandwich structure. From experimental results of spin polarized injection and transport in organic semiconductors(OSCs),we theoretically study the current spin polarization and magnetoresistance under an electric and a magnetic field in a ferromagnetic/organic semiconductor/ferromagnetic(FM/OSC/FM) sandwich structure according to the spin drift-diffusion theory and Ohm's law.From the calculations,it is found that the interfacial current spin polarization is enhanced by several orders of magnitude through tuning the magnetic and electric fields by taking into account the specific characteristics of OSC.Furthermore,the effects of the electric and magnetic fields on the magnetoresistance are also discussed in the sandwich structure.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第10期539-545,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant Nos. 10904083 and 10904084) the Shandong Provincial Distinguished Middle-Aged and Young Scientist Encourage and Reward Foundation,China (Grant No. BS2009CL008) the Science and Technology Foundation for Institution of Higher Education of Shandong Province,China (Grant No. J09LA03)
关键词 organic spintronics spin diffusion and drift current spin polarization MAGNETORESISTANCE organic spintronics spin diffusion and drift current spin polarization magnetoresistance
  • 相关文献

参考文献19

  • 1Wolf S A, Awschalom D D, Buhrman R A, Daughton J M, Molnar S V, Roukes M L, Chtchelkanova A Y and Treger D M 2001 Science 294 1488.
  • 2Naber W J M, Faez S and Gvan der Wie W 2007 J. Phys. D: Appl. Phys. 40 R205.
  • 3Mi Y L, Zhang M and Yan H 2008 Phys. Lett. A 372 6434.
  • 4Friend R H, Gymer R W, Holmes A B, Burroughes J H, Marks R N, Taliani C, Bradley D D C, Dos Santos D A, Bradas J L, LSgdlund M and Salaneck W R 1999 Nature 397 121.
  • 5Voss D 2000 Nature 407 442.
  • 6Dediu V A, Hueso L E, Bergenti I and Taliani C 2009 Nature Mater. 8 707.
  • 7Dediu V, Murgia M, Matacotta F C, Taliani C and Barbanera S 2002 Solid State Commun. 122 181.
  • 8Xiong Z H, Wu D, Valy Vardeny Z and Shi J 2004 Nature 427 821.
  • 9Dediu V, Hueso L E, Bergenti I, Riminucci A, Borgatti F, Graziosi P, Newby C, Casoli F, de Jong M P, Taliani C and Zhan Y 2008 Phys. Rev. B 78 115203.
  • 10Barraud C, Seneor P, Mattana R, Fusil S, Bouzehouane K, Deranlot C, Graziosi P, Hueso L, Bergenti I, Dediu V, Petroff F and Fert A 2010 Nature Phys. 6 625.

同被引文献3

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