Description

Book Synopsis
These lecture notes provide a detailed treatment of the thermal energy storage and transport by conduction in natural and fabricated structures. Thermal energy in two carriers, i.e. phonons and electrons — are explored from first principles. For solid-state transport, a common Landauer framework is used for heat flow. Issues including the quantum of thermal conductance, ballistic interface resistance, and carrier scattering are elucidated. Bulk material properties, such as thermal and electrical conductivity, are derived from particle transport theories, and the effects of spatial confinement on these properties are established.

Table of Contents
Lattice Structure: Phonons and Electrons; Carrier Statistics; Basic Thermal Properties; Landauer Formalism: Dominant Carriers and Quantization; Transmission Functions and Scattering; Interfacial Transport; Toy Problems, Online Tools, and Examples.

Thermal Energy At The Nanoscale

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A Hardback by Timothy S Fisher

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    View other formats and editions of Thermal Energy At The Nanoscale by Timothy S Fisher

    Publisher: World Scientific Publishing Co Pte Ltd
    Publication Date: 06/12/2013
    ISBN13: 9789814449779, 978-9814449779
    ISBN10: 9814449776

    Description

    Book Synopsis
    These lecture notes provide a detailed treatment of the thermal energy storage and transport by conduction in natural and fabricated structures. Thermal energy in two carriers, i.e. phonons and electrons — are explored from first principles. For solid-state transport, a common Landauer framework is used for heat flow. Issues including the quantum of thermal conductance, ballistic interface resistance, and carrier scattering are elucidated. Bulk material properties, such as thermal and electrical conductivity, are derived from particle transport theories, and the effects of spatial confinement on these properties are established.

    Table of Contents
    Lattice Structure: Phonons and Electrons; Carrier Statistics; Basic Thermal Properties; Landauer Formalism: Dominant Carriers and Quantization; Transmission Functions and Scattering; Interfacial Transport; Toy Problems, Online Tools, and Examples.

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