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Theory and simulation methods for electronic and phononic transport in thermoelectric materials

This book introduces readers to state-of-the-art theoretical and simulation techniques for determining transport in complex band structure materials and nanostructured-geometry materials, linking the techniques developed by the electronic transport community to the materials science community. Start...

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Detalles Bibliográficos
Autor principal: Neophytou, Neophytos
Lenguaje:eng
Publicado: Springer 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-030-38681-8
http://cds.cern.ch/record/2717217
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author Neophytou, Neophytos
author_facet Neophytou, Neophytos
author_sort Neophytou, Neophytos
collection CERN
description This book introduces readers to state-of-the-art theoretical and simulation techniques for determining transport in complex band structure materials and nanostructured-geometry materials, linking the techniques developed by the electronic transport community to the materials science community. Starting from the semi-classical Boltzmann Transport Equation method for complex band structure materials, then moving on to Monte Carlo and fully quantum mechanical models for nanostructured materials, the book addresses the theory and computational complexities of each method, as well as their advantages and capabilities. Presented in language that is accessible to junior computational scientists, while including enough detail and depth with regards to numerical implementation to tackle modern research problems, it offers a valuable resource for computational scientists and postgraduate researchers whose work involves the theory and simulation of electro-thermal transport in advanced materials.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2020
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spelling cern-27172172021-04-21T18:08:01Zdoi:10.1007/978-3-030-38681-8http://cds.cern.ch/record/2717217engNeophytou, NeophytosTheory and simulation methods for electronic and phononic transport in thermoelectric materialsOther Fields of PhysicsThis book introduces readers to state-of-the-art theoretical and simulation techniques for determining transport in complex band structure materials and nanostructured-geometry materials, linking the techniques developed by the electronic transport community to the materials science community. Starting from the semi-classical Boltzmann Transport Equation method for complex band structure materials, then moving on to Monte Carlo and fully quantum mechanical models for nanostructured materials, the book addresses the theory and computational complexities of each method, as well as their advantages and capabilities. Presented in language that is accessible to junior computational scientists, while including enough detail and depth with regards to numerical implementation to tackle modern research problems, it offers a valuable resource for computational scientists and postgraduate researchers whose work involves the theory and simulation of electro-thermal transport in advanced materials.Springeroai:cds.cern.ch:27172172020
spellingShingle Other Fields of Physics
Neophytou, Neophytos
Theory and simulation methods for electronic and phononic transport in thermoelectric materials
title Theory and simulation methods for electronic and phononic transport in thermoelectric materials
title_full Theory and simulation methods for electronic and phononic transport in thermoelectric materials
title_fullStr Theory and simulation methods for electronic and phononic transport in thermoelectric materials
title_full_unstemmed Theory and simulation methods for electronic and phononic transport in thermoelectric materials
title_short Theory and simulation methods for electronic and phononic transport in thermoelectric materials
title_sort theory and simulation methods for electronic and phononic transport in thermoelectric materials
topic Other Fields of Physics
url https://dx.doi.org/10.1007/978-3-030-38681-8
http://cds.cern.ch/record/2717217
work_keys_str_mv AT neophytouneophytos theoryandsimulationmethodsforelectronicandphononictransportinthermoelectricmaterials