The Non-Equilibrium Green's Function Method for Nanoscale Device Simulation

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For modeling the transport of carriers in nanoscale devices, a Green-function formalism is the most accurate approach. Due to the complexity of the formalism, one should have a deep understanding of the underlying principles and use smart approximations and numerical methods for solving the kinetic equations at a reasonable computational time.

In this book the required concepts from quantum and statistical mechanics and numerical methods for calculating Green functions are presented. The Green function is studied in detail for systems both under equilibrium and under nonequilibrium conditions. Because the formalism enables rigorous modeling of different scattering mechanisms in terms of self-energies, but an exact evaluation of self-energies for realistic systems is not possible, their approximation and inclusion in the quantum kinetic equations of the Green functions are elaborated. All the elements of the kinetic equations, which are the device Hamiltonian, contact self-energies and scattering self-energies, are examined and efficient methods for their evaluation are explained. Finally, the application of these methods to study novel electronic devices such as nanotubes, graphene, Si-nanowires and low-dimensional thermoelectric devices and photodetectors are discussed.


The Green's function for systems under equilibrium and non-equilibrium conditions are studied in detail Numerical methods for calculating Green's functions are presented Required concepts form quantum and statistical mechanics are presented Includes supplementary material: sn.pub/extras

Inhalt
Review of quantum mechanics.- Review of statistical mechanics.- Green's function formalism.- Implementation.- Applications.- Non-interacting Green's functions.- Feynman diagrams.- Variational derivation of self-energies.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783709117996
    • Genre Elektrotechnik
    • Auflage 2014
    • Sprache Englisch
    • Lesemotiv Verstehen
    • Anzahl Seiten 276
    • Größe H241mm x B160mm x T21mm
    • Jahr 2014
    • EAN 9783709117996
    • Format Fester Einband
    • ISBN 3709117992
    • Veröffentlichung 25.07.2014
    • Titel The Non-Equilibrium Green's Function Method for Nanoscale Device Simulation
    • Autor Mahdi Pourfath
    • Untertitel Computational Microelectronics
    • Gewicht 582g
    • Herausgeber Springer Vienna

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