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- W4288322519 abstract "Thermoelectric conductance of an edge mode is investigated. The edge modes of a $2D $ and $3D$ two band model with parabolic dispersion is considered. For the the one dimensional non interacting fermions the thermal conductivity computed agrees with the result known from $Bosonization$ computations. In the presence of a magnetic field, backscattering is allowed and controls the value of the thermal conductivity. The thermal conductivity is obtained from the continuity equation of thermal current energy conservation. The thermal conductivity is computed introducing the $Scattering$ matrix for particles and anti-particles. At finite temperatures the backscattering is allowed, the electric conductance, the thermoelectric conductance and the thermal conductance decrease with the increase of the magnetic field. At finite temperatures, weak localization effects are small and can be ignored. We confirm the experimental results in a magnetic field for a $3D$ Topological Insulator. An experimental set-up was proposed to test our theory." @default.
- W4288322519 created "2022-07-28" @default.
- W4288322519 creator A5002719943 @default.
- W4288322519 date "2019-06-18" @default.
- W4288322519 modified "2023-09-27" @default.
- W4288322519 title "Thermal conductance of an Edge mode" @default.
- W4288322519 doi "https://doi.org/10.48550/arxiv.1906.08705" @default.
- W4288322519 hasPublicationYear "2019" @default.
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