Research Catalog

Optimal device design

Title
Optimal device design / edited by A.F.J. Levi, S. Haas.
Publication
Cambridge, UK ; New York : Cambridge University Press, 2010.

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StatusFormatAccessCall NumberItem Location
TextUse in library TS171 .O78 2010Off-site

Details

Additional Authors
  • Levi, A. F. J. (Anthony Frederic John), 1959-
  • Haas, Stephan.
Description
xi, 282 pages : illustrations; 26 cm
Summary
  • "Explore the frontier of device engineering by applying optimization to nanoscience and device design. This cutting-edge work shows how robust, manufacturable designs that meet previously unobtainable system specifications can be created using a combination of modern computer power, adaptive algorithms, and realistic device-physics models. Applying this method to nanoscience is a path to creating new devices with new functionality, and it could be the key design element in making nanoscience a practical technology. Basic introductory examples along with MATLAB code are included, through to more formal and sophisticated approaches, and specific applications and designs are examined. Essential reading for researchers and engineers in electronic devices, nanoscience, materials science, applied mathematics, and applied physics"--Provided by publisher.
  • "Dramatic advances in the control of physical systems at the atomic scale have provided many new ways to manufacture devices. An important question is how best to design these ultra-small complex systems. Access to vast amounts of inexpensive computing power makes it possible to accurately simulate their physical properties. Furthermore, high-performance computers allow us to explore the large number of degrees of freedom with which to construct new device configurations. This book aims to lay the groundwork for a methodology to exploit these emerging capabilities using optimal device design. By combining applied mathematics, smart computation, physical modeling, and 21st century engineering and fabrication tools it is possible to find atomic and nano-scale configurations that result in components with performance characteristics that have not been achieved using other methods"--Provided by publisher.
Subject
  • Industrial design
  • New products
  • Manufacturing processes
  • Design
  • industrial design
  • design (discipline)
  • manufacturing
  • Design
  • Industrial design
  • Manufacturing processes
  • New products
Bibliography (note)
  • Includes bibliographical references and index.
Contents
Frontiers in device engineering -- Atoms-up design -- Electron devices and electron transport -- Aperiodic dielectric design -- Design at the classical-quantum boundary -- Robust optimization in high dimensions -- Mathematical framework for optimal design -- Future directions -- Global optimization algorithms.
ISBN
  • 9780521116602
  • 0521116600
LCCN
2009036991
OCLC
  • ocn428024297
  • 428024297
  • SCSB-9325201
Owning Institutions
Princeton University Library