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- W2005693789 abstract "Electronic transport in an armchair Single-Wall Carbon Nanotube (SWCNT) p–n junction with axial magnetic flux was investigated via Landauer–Buttiker formalism and the nonequilibrium Greenʼs function technique. The electrical conductance G and Seebeck coefficient S were studied under different parameters, such as magnetic flux, on-site energy, circumference of SWCNT and Anderson disorder. The numerical calculation results demonstrate that in the absence of magnetic flux ϕ, quantized G plateaus can be obtained because there is no back scattering. The Seebeck coefficient S is zero because electron population is balanced at both sides of Fermi level eF. For ϕ≠0, an energy gap appears in the band structure of SWCNT. Nearly quantized G plateaus can still be obtained in the n–n region, while the G is small in the p–n region. In addition, the Seebeck coefficient S shows an peak and a valley obviously at the edges of energy gap when electron population changes abruptly in the vicinity of eF. Whatʼs more, the Anderson disorder does not change G and S much because there are not edge states in SWCNT and the electron–hole mixture cannot be facilitated." @default.
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- W2005693789 date "2012-11-01" @default.
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- W2005693789 title "Theoretical investigation of electronic and thermoelectric properties of single-wall carbon nanotube p–n junction" @default.
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- W2005693789 doi "https://doi.org/10.1016/j.physleta.2012.10.022" @default.
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