Epitaxy of semiconductors : physics and fabrication of heterostructures /

The extended and revised edition of this textbook provides essential information for a comprehensive upper-level graduate course on the crystalline growth of semiconductor heterostructures. Heteroepitaxy is the basis of todays advanced electronic and optoelectronic devices, and it is considered one...

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Bibliographic Details
Main Authors: Pohl, Udo W. (Author)
Published: Springer,
Publisher Address: Cham :
Publication Dates: [2020]
Literature type: Book
Language: English
Edition: Second edition.
Series: Graduate texts in physics. 1868-4513
Subjects:
Summary: The extended and revised edition of this textbook provides essential information for a comprehensive upper-level graduate course on the crystalline growth of semiconductor heterostructures. Heteroepitaxy is the basis of todays advanced electronic and optoelectronic devices, and it is considered one of the most important fields in materials research and nanotechnology. The book discusses the structural and electronic properties of strained epitaxial layers, the thermodynamics and kinetics of layer growth, and it describes the major growth techniques: metalorganic vapor-phase epitaxy, molecular-beam epitaxy, and liquid-phase epitaxy. It also examines in detail cubic and hexagonal semiconductors, strain relaxation by misfit dislocations, strain and confinement effects on electronic states, surface structures, and processes during nucleation and growth. Requiring only minimal knowledge of solid-state physics, it provides natural sciences, materials science and electrical engineering students and their lecturers elementary introductions to the theory and practice of epitaxial growth, supported by references and over 300 detailed illustrations.
Carrier Form: xx, 535 pages : illustrations (some color) ; 24 cm.
Bibliography: Includes bibliographical references and index.
ISBN: 9783030438715
9783030438685
3030438686
Index Number: QD921
CLC: O78
Call Number: O78/P748/2nd ed.
Contents: Introduction -- Structural Properties of Heterostructures -- Electronic Properties of Heterostructures -- Thermodynamics of Epitaxial Layer-Growth -- Atomistic Aspects of Epitaxial Layer-Growth -- In situ Growth Monitoring -- Application of Surfactants -- Doping, Diffusion, and Contacts -- Methods of Epitaxy -- Special Growth Techniques.