Keldysh field theory approach to electric and thermoelectric transport in quantum dots

Fuente: arXiv
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Main Authors: Uguccioni, Marco, Dell'Anna, Luca
Format: Preprint
Published: 2024
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author Uguccioni, Marco
Dell'Anna, Luca
author_facet Uguccioni, Marco
Dell'Anna, Luca
contents We compute the current and the noise power matrix in a quantum dot connected to two metallic reservoirs by using the Keldysh field theory approach, a non-equilibrium quantum field theory language in the functional integral formalism. We first show how this technique allows us to recover rapidly and straightforwardly well-known results in literature, such as the Meir-Wingreen formula for the average current, resulting extremely effective in dealing with quantum transport problem. We then discuss in detail the electric and thermoelectric properties due to transport of electrons in the case of a single-level and two-level non-interacting quantum dot. In particular, we derive the optimal conditions for maximizing the thermoelectric current, finding an upper limit for the thermoelectric coefficient. Moreover, in the two-level system we show that the zero-temperature linear conductance drops rapidly to zero by a symmetrical removal of the degeneracy at the Fermi energy.
format Preprint
id arxiv_https___arxiv_org_abs_2411_04721
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Keldysh field theory approach to electric and thermoelectric transport in quantum dots
Uguccioni, Marco
Dell'Anna, Luca
Mesoscale and Nanoscale Physics
We compute the current and the noise power matrix in a quantum dot connected to two metallic reservoirs by using the Keldysh field theory approach, a non-equilibrium quantum field theory language in the functional integral formalism. We first show how this technique allows us to recover rapidly and straightforwardly well-known results in literature, such as the Meir-Wingreen formula for the average current, resulting extremely effective in dealing with quantum transport problem. We then discuss in detail the electric and thermoelectric properties due to transport of electrons in the case of a single-level and two-level non-interacting quantum dot. In particular, we derive the optimal conditions for maximizing the thermoelectric current, finding an upper limit for the thermoelectric coefficient. Moreover, in the two-level system we show that the zero-temperature linear conductance drops rapidly to zero by a symmetrical removal of the degeneracy at the Fermi energy.
title Keldysh field theory approach to electric and thermoelectric transport in quantum dots
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2411.04721