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Título

Beyond the state of the art: Novel approaches for thermal and electrical transport in nanoscale devices

AutorBiele, Robert CSIC ORCID; D'Agosta, Roberto CSIC ORCID
Palabras claveElectronic transport
Thermal transport
Strongly correlated systems
Landauer-Büttiker formalism
Boltzmann transport equation
Time-dependent density functional theory
Electron–phonon coupling
Fecha de publicación2-ago-2019
EditorMolecular Diversity Preservation International
CitaciónEntropy 21: 752 (2019)
ResumenAlmost any interaction between two physical entities can be described through the transfer of either charge, spin, momentum, or energy. Therefore, any theory able to describe these transport phenomena can shed light on a variety of physical, chemical, and biological effects, enriching our understanding of complex, yet fundamental, natural processes, e.g., catalysis or photosynthesis. In this review, we will discuss the standard workhorses for transport in nanoscale devices, namely Boltzmann's equation and Landauer's approach. We will emphasize their strengths, but also analyze their limits, proposing theories and models useful to go beyond the state of the art in the investigation of transport in nanoscale devices.
Versión del editorhttp://dx.doi.org/10.3390/e21080752
URIhttp://hdl.handle.net/10261/203135
DOI10.3390/e21080752
Identificadoresdoi: 10.3390/e21080752
issn: 1099-4300
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