Quantum confined semiconductor nanostructures : symposium held December 2-5, 2002, Boston, Massachusetts, U.S.A.

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Bibliographic Information

Quantum confined semiconductor nanostructures : symposium held December 2-5, 2002, Boston, Massachusetts, U.S.A.

editors, Victor I. Klimov ... [et al.]

(Materials Research Society symposium proceedings, v. 737)

Materials Research Society, c2003

Available at  / 7 libraries

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Includes bibliographical references and indexes

Description and Table of Contents

Description

Progress in nanoscale engineering, as well as an improved understanding of the physical phenomena at the nanometer scale, have contributed to the rapid development of novel nanostructured semiconducting materials and nanodevices. Using new approaches, semiconductor structures can be fabricated with sub-nanometer accuracy and precisely controlled electronic and optical properties. The immense technological potential and new exciting physics have stimulated interest in semiconductor nanostructures over several years. This book brings together a single comprehensive overview of recent progress and future directions in nanoscale semiconductor research. Fields ranging from materials science to physics, chemistry, electrical and microelectronic engineering, circuit design, and more, are represented. Topics include: quantum dot theory, growth and optics; single quantum dot spectroscopy; charge and spin; Si/Ge quantum dot structures; bio-quantum dots; electric force microscopy and charge injection; transport; Si nanocrystals and nc-Si superlattices; Si/Ge nanostructures; bioactive nanostructures; lithographic techniques and lateral nanopatterning; semiconductor nanowires and nanotubes; metallic and rare-earth-doped nanoparticles; theoretical studies and numerical simulations in Si/SiGe nanostructures and applications of Group IV nanoscale materials.

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Details

  • NCID
    BA62100008
  • ISBN
    • 1558996745
  • Country Code
    us
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    Warrendale, Pa.
  • Pages/Volumes
    xxiii, 834 p.
  • Size
    24 cm
  • Parent Bibliography ID
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