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Tunneling current of the Coulomb-coupled quantum dots embedded in n-n junction

Tunneling current of the Coulomb-coupled quantum dots embedded in n-n junction
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摘要 Taking account of the electron--electron (hole) and electron--hole interactions, the tunneling processes of the main quantum dot (QD) Coulomb-coupled with a second quantum dot embedded in n--n junction have been investigated. The eighteen resonance mechanisms involved in the tunneling processes of the system have been identified. It is found that the tunneling current depends sensitively on the electron occupation number in the second quantum dot. When the electron occupation number in the second dot is tiny, both the tunneling current peaks and the occupation number plateaus in the main QD are determined by the intra-resonance mechanism. The increase of the electron occupation number in the second dot makes the inter-resonance mechanism participate in the transport processes. The competition between the inter and intra resonance mechanisms persists until the electron occupation number in the second dot reaches around unity, leading to the consequence that the inter-resonance mechanisms completely dominate the tunneling processes. Taking account of the electron--electron (hole) and electron--hole interactions, the tunneling processes of the main quantum dot (QD) Coulomb-coupled with a second quantum dot embedded in n--n junction have been investigated. The eighteen resonance mechanisms involved in the tunneling processes of the system have been identified. It is found that the tunneling current depends sensitively on the electron occupation number in the second quantum dot. When the electron occupation number in the second dot is tiny, both the tunneling current peaks and the occupation number plateaus in the main QD are determined by the intra-resonance mechanism. The increase of the electron occupation number in the second dot makes the inter-resonance mechanism participate in the transport processes. The competition between the inter and intra resonance mechanisms persists until the electron occupation number in the second dot reaches around unity, leading to the consequence that the inter-resonance mechanisms completely dominate the tunneling processes.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第2期450-460,共11页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China (Grant No. 60776062) the National Fundamental Fund of Personnel Training (Grant No. J0730317) the Natural Science Foundation of Shanxi Province, China (Grant Nos.2008011001-1 and 2008011001-2)
关键词 single-electron tunneling exciton complexes quantum dots single-electron tunneling exciton complexes quantum dots
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参考文献43

  • 1Jacak L, Hawrylak P and Wojs A 1998 Quantum Dots (Berlin: Springer-Verlag).
  • 2Petroff P M, Lorke A and Imamoglu A 2001 Phys. Today 54 46.
  • 3Bhattacharya P, Ghosh S and Stiff-Roberts A D 2007 Proceedings of the IEEE 95 1723.
  • 4Loss D and DiVincenzo D P 1998 Phys. Rev. A 57 120.
  • 5Ouyang M and Awschalom D D 2003 Science 301 1074.
  • 6Liu K, Ding H L, Zhang X G, Yu L W, Huang X F and Chen K G 2008 Acta Phys. Sin. 57 7052 (in Chinese).
  • 7Xu T N, Wu H Z and Si J X 2008 Acta Phys. Sin. 57 2574 (in Chinese).
  • 8Huang S S, Niu Z C, Zhan F, Ni H Q, Zhao H, Wu D H and Sun Z 2008 Chin. Phys. B 17 1674.
  • 9Goldhaber-Gordon D, Montemerlo M S, Love J C, Opiteck G J and Ellenbogen J 1997 Proceedings of the IEEE 85 521.
  • 10Kuo David M T and Chang Y C 2005 Phys. Rev. B 72 085334.

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