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Impurity effects on electrical conductivity of doped bilayer graphene in the presence of a bias voltage

Impurity effects on electrical conductivity of doped bilayer graphene in the presence of a bias voltage
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摘要 We address the electrical conductivity of bilayer graphene as a function of temperature, impurity concentration, and scattering strength in the presence of a finite bias voltage at finite doping, beginning with a description of the tight-binding model using the linear response theory and Green's function approach. Our results show a linear behavior at high doping for the case of high bias voltage. The effects of electron doping on the electrical conductivity have been studied via changing the electronic chemical potential. We also discuss and analyze how the bias voltage affects the temperature behavior of the electrical conductivity. Finally, we study the behavior of the electrical conductivity as a function of the impurity concentration and scattering strength for different bias voltages and chemical potentials respectively. The electrical conductivity is found to be monotonically decreasing with impurity scattering strength due to the increased scattering among electrons at higher impurity scattering strength. We address the electrical conductivity of bilayer graphene as a function of temperature, impurity concentration, and scattering strength in the presence of a finite bias voltage at finite doping, beginning with a description of the tight-binding model using the linear response theory and Green's function approach. Our results show a linear behavior at high doping for the case of high bias voltage. The effects of electron doping on the electrical conductivity have been studied via changing the electronic chemical potential. We also discuss and analyze how the bias voltage affects the temperature behavior of the electrical conductivity. Finally, we study the behavior of the electrical conductivity as a function of the impurity concentration and scattering strength for different bias voltages and chemical potentials respectively. The electrical conductivity is found to be monotonically decreasing with impurity scattering strength due to the increased scattering among electrons at higher impurity scattering strength.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第7期316-323,共8页 中国物理B(英文版)
关键词 bilayer graphene Green's function electrical conductivity bilayer graphene Green's function electrical conductivity
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参考文献62

  • 1McCann E and Fal'ko V I 2006 Phys. Rev. Lett. 96 086805.
  • 2Novoselov K S 2006 Nat. Phys. 2 177.
  • 3Novoselov K S 2005 Nature 438 197.
  • 4Zhang Y, Tan Y W, Stormer H L and Kim P 2005 Nature 438 201.
  • 5Koshino M and Ando T 2006 Phys. Rev. B 73 245403.
  • 6Nilsson J, Castro Neto A H, Guinea F and Peres N M R 2008 Phys. Rev. B 78 045405.
  • 7Cserti J, Csord'as A and D'avid G 2007 Phys. Rev. Lett. 99 66802.
  • 8Min H, Sahu B, Banerjee S K and MacDonald A H 2007 Phys. Rev. B 75 155115.
  • 9Castro Neto A H, Guinea F, Peres N M R, Novoselov K S and Geim A K 2009 Rev. Mod. Phys. 81 109.
  • 10Weitz R T, Allen M T, Feldman B E, Martin J and Yacoby A 2010 Science 330 812.

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