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Advanced epitaxy for future electronics, optics, and quantum physics /

"The future development of electronics, optics, and quite probably, quantum physics is being driven by advances in epitaxial materials. Band gap engineering, wafer bonding techniques, and epitaxial regrowth technology will push transistors far beyond the present speed barriers. Oxide growth wit...

Пълно описание

Основен автор: Gossard, A. C.
Формат: Електронна книга
Език: English
Публикувано: Washington, D.C. : National Academy Press, ℗♭2000.
Серия: International science lecture series ; 7th lecture.
Compass series (Washington, D.C.)
Предмети:
Онлайн достъп: http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=86860
Подобни документи: Print version:: Advanced epitaxy for future electronics, optics, and quantum physics.
Резюме: "The future development of electronics, optics, and quite probably, quantum physics is being driven by advances in epitaxial materials. Band gap engineering, wafer bonding techniques, and epitaxial regrowth technology will push transistors far beyond the present speed barriers. Oxide growth within epitaxial layer structures and new advances in tunnel structures will push the development of the next generation of high-performance laser arrays and of efficient cascade laser designs. Perfection of the growth of semiconductor nitrides will move future electronics to higher powers and to suitabliity for extreme environments while revolutionizing lighting and display. Growth technologies to corporate metallic particles and magnetic elements within high-quality semiconductors promise ultrafast electro-optical components for chemical and biological applications as well as eloectronically controlled magnetism for future memories and electrical/magnetic hybrid devices. Quantum dot materials will lead the field of signal electronics while hopefully providing a new proving and discovery ground for quantum physics. This paper will discuss the current progress in these areas."--Page 1.
Физически характеристики: 1 online resource (viii, 11 pages) : illustrations.
Библиография: Includes bibliographical references.
ISBN: 0309512875
9780309512879