Description

Book Synopsis
This introductory text deals with how electric currents behave at the nanometer scale. The book ties together several aspects of recent research on current flow at the nanoscale, including its relevance in defects, grain boundaries, tunneling, and atomic contacts; its effects through nanostructures, particularly for transistor miniaturization; and the techniques used to probe currents and voltages at the nanoscale, focusing on scanning probe microscopy and transport measurements. It covers topics such as quantum transport, mesoscopic physics, and molecular electronics, among others.Unlike other books on this subject that are almost entirely theoretical, the introductory nature of this book strikes a balance between theory and experiment. Moreover, given the introductory nature of the book, it will not become obsolete quickly and chapters can be added at later stages as new developments inevitably arise. Based largely on MEng and MPhil courses that have been originated and taught by the author, as well as on his own research, the book is written primarily for postgraduate students, but contains elements that undergraduates can also understand and apply. The wide coverage of topics allows for a broad readership base, and serves as a good starting point for those who wish to do work on nanoscale transport.

Table of Contents
Microscopic Current Flow; Quantum Current Flow; Mesoscopic Transport: Between the Nanoscale and the Macroscale; Scanning Probe Multimeters; Electromigration: How Currents Move Atoms, and Implications for Nanoelectronics; Elements of Single-Electron and Molecular Electronics.

Current At The Nanoscale: An Introduction To

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    A Hardback by Colm Durkan

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      Publisher: Imperial College Press
      Publication Date: Publication Date: 10/01/2008
      ISBN13: 9781860948237, 978-1860948237
      ISBN10: 1860948235

      Description

      Book Synopsis
      This introductory text deals with how electric currents behave at the nanometer scale. The book ties together several aspects of recent research on current flow at the nanoscale, including its relevance in defects, grain boundaries, tunneling, and atomic contacts; its effects through nanostructures, particularly for transistor miniaturization; and the techniques used to probe currents and voltages at the nanoscale, focusing on scanning probe microscopy and transport measurements. It covers topics such as quantum transport, mesoscopic physics, and molecular electronics, among others.Unlike other books on this subject that are almost entirely theoretical, the introductory nature of this book strikes a balance between theory and experiment. Moreover, given the introductory nature of the book, it will not become obsolete quickly and chapters can be added at later stages as new developments inevitably arise. Based largely on MEng and MPhil courses that have been originated and taught by the author, as well as on his own research, the book is written primarily for postgraduate students, but contains elements that undergraduates can also understand and apply. The wide coverage of topics allows for a broad readership base, and serves as a good starting point for those who wish to do work on nanoscale transport.

      Table of Contents
      Microscopic Current Flow; Quantum Current Flow; Mesoscopic Transport: Between the Nanoscale and the Macroscale; Scanning Probe Multimeters; Electromigration: How Currents Move Atoms, and Implications for Nanoelectronics; Elements of Single-Electron and Molecular Electronics.

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