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Persistent spin current in a quantum wire with weak Dresselhaus spin-orbit coupling

Persistent spin current in a quantum wire with weak Dresselhaus spin-orbit coupling
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摘要 The spin current in a parabolically confined semiconductor hcterojunction quantum wire with Drcsselhaus spinorbit coupling is theoretically studied by using the perturbation method. The formulae of the elements for linear and angular spin current densities are derived by using the recent definition for spin current based on spin continuity equation. It is found that the spin current in this Dresselhaus spin-orbit coupling quantum wire is antisymmetrical, which is different from that in Rashba model due to the difference in symmetry between these two models. Some numerical examples for the result are also demonstrated and discussed. The spin current in a parabolically confined semiconductor hcterojunction quantum wire with Drcsselhaus spinorbit coupling is theoretically studied by using the perturbation method. The formulae of the elements for linear and angular spin current densities are derived by using the recent definition for spin current based on spin continuity equation. It is found that the spin current in this Dresselhaus spin-orbit coupling quantum wire is antisymmetrical, which is different from that in Rashba model due to the difference in symmetry between these two models. Some numerical examples for the result are also demonstrated and discussed.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第2期533-536,共4页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No 10574042) and the Scientific Research Fund of Hunan Provincial Education Department (Grant No 04A031).
关键词 semiconductor heterojunction quantum wire Dresslhuaus spin-orbit coupling spin current semiconductor heterojunction quantum wire, Dresslhuaus spin-orbit coupling, spin current
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参考文献21

  • 1Wolf S A, Awschalom D D, Buhrman R A, Daughton J M,Molnar S V, Roukes M L, Chtchellanova A Y and Treger D M 2001 Science 294 1488
  • 2Prinz G A 1998 Science. 282 1660
  • 3Schliemann J 2006 cond-mat/0602330
  • 4Engel H A, Rashba E I and Halperin B I 2006 condmat/0603306
  • 5Sinova J, Culcer D, Niu Q, Sinitsyn N A, Jungwirth T and Macdonald A J 2005 Phys. Rev. Lett. 92 126603
  • 6Culcer D, Sinova J, Sinitsyn N A, Jungwirth T, Mac-Donald A H and Niu Q 2004 Phys. Rev. Lett. 93 046602
  • 7Zhang S and Yang Z 2005 Phys. Rev. Lett. 94 066602
  • 8Shi J R, Zhang P, Xiao D and Niu Q 2006 Phys. Rev. Lett.96 076604
  • 9Nikolic B K, Souma S, Zarbo L P and Sinova J 2005 Phys Rev. Lett. 95 046601
  • 10Sun Q F and Xie X C 2005 Phys. Rev. B 72 245305

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