Hydrodynamics of charged two-dimensional Dirac systems I: thermo-electric transport

Publication date

2022-06-20

Authors

Pongsangangan, KitinanISNI 0000000527735020
Ludwig, TimISNI 0000000506808171
Stoof, HenkISNI 0000000116481361
Fritz, L.ISNI 0000000419304792

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Document Type

/dk/atira/pure/researchoutput/researchoutputtypes/workingpaper/preprint
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cc_by

Abstract

In this paper we study thermo-electric transport in interacting two-dimensional Dirac-type systems using a phenomenological Boltzmann approach. We consider a setup that can accommodate electrons, holes, and collective modes. In the first part of the paper we consider the electron-hole hydrodynamics, a model that is popular in the context of graphene, and its transport properties. In a second part, we propose a novel type of hydrodynamics. In that setup, the `fluid' consists of electrons, holes, and plasmons. We study its transport properties, especially the thermo-electric behavior. The results of this part can also be adapted to the study of a fluid consisting of electrons and phonons. This paper is accompanied by a technical paper in which we give a detailed derivation of the Boltzmann equations and the encoded conservation laws.

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Citation

Pongsangangan, K, Ludwig, T, Stoof, H T C & Fritz, L 2022 'Hydrodynamics of charged two-dimensional Dirac systems I : thermo-electric transport' pp. 1-25. https://doi.org/10.48550/arXiv.2206.09687