Materials Fundamentals Of Molecular Beam Epitaxy

Paperback | October 21, 1992

byJeffrey Y. TsaoEditorJeffrey Y. Tsao

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The technology of crystal growth has advanced enormously during the past two decades. Among, these advances, the development and refinement of molecular beam epitaxy MBE has been among the msot important. Crystals grown by MBE are more precisely controlled than those grown by any other method, and today they form the basis for the most advanced device structures in solid-state physics, electronics, and optoelectronics. As an example, Figure 0.1 shows a vertical-cavity surface emitting laser structure grown by MBE. * Provides comprehensive treatment of the basic materials and surface science principles that apply to molecular beam epitaxy* Thorough enough to benefit molecular beam epitaxy researchers* Broad enough to benefit materials, surface, and device researchers* Referenes articles at the forefront of modern research as well as those of historical interest

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The technology of crystal growth has advanced enormously during the past two decades. Among, these advances, the development and refinement of molecular beam epitaxy MBE has been among the msot important. Crystals grown by MBE are more precisely controlled than those grown by any other method, and today they form the basis for the most...

From the Jacket

Crystals grown by molecular beam epitaxy (MBE) form the basis for today's most advanced device structures in solid-state physics, electronics and optoelectronics. Materials Fundamentals of Molecular Beam Epitaxy gathers together the basic materials science principles that apply to MBE, and treats in great depth its most important aspec...

Format:PaperbackDimensions:301 pages, 9 × 6 × 0.68 inPublished:October 21, 1992Publisher:Academic PressLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0127016252

ISBN - 13:9780127016252

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Table of Contents

Preface. List of Figures. List of Tables. Bulk Phase Equilibra. Free Energies and Open Systems. Elemental Phases. Alloy Phases. Thin Film Structure and Microstructure. Ordering and Clustering. Coherency and Semi-coherency. Surface Morphology and Composition. Surface Composition. Index.