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Electronic States in Crystals of Finite Size Quantum confinement of Bloch waves

Title
Electronic States in Crystals of Finite Size [electronic resource] : Quantum confinement of Bloch waves / by SHANGYUAN REN.
ISBN
9780387263045
Edition
1st ed. 2006.
Publication
New York, NY : Springer New York : Imprint: Springer, 2006.
Physical Description
1 online resource (XIV, 206 p.) 31 illus.
Local Notes
Access is available to the Yale community.
Access and use
Access restricted by licensing agreement.
Summary
The theory of electronic states in the traditionally solid state physics is essentially a theory of electronic states in crystals of infinite size. However, any real crystal always has a finite size. This book presents an analytical theory on the electronic states in ideal low-dimensional systems and finite crystals recently developed by the author based on a differential equation theory approach. It gives some exact and general fundamental understandings on the electronic states in ideal low-dimensional systems and finite crystals and provides new insights on some fundamental problems in low-dimensional systems such as the surface states, quantum confinement effects etc, some of them are quite different from what are traditionally believed in the solid state physics community.
Variant and related titles
Springer ENIN.
Other formats
Printed edition:
Printed edition:
Printed edition:
Format
Books / Online
Language
English
Added to Catalog
September 20, 2019
Series
Springer tracts in modern physics ; 212.
Springer Tracts in Modern Physics, 212
Contents
Why a Theory of Electronic States in Crystals of Finite Size is Needed
One-Dimensional Semi-infinite Crystals and Finite Crystals
Mathematical Basis
Surface States in One-Dimensional Semi-infinite Crystals
Electronic States in Ideal One-Dimensional Crystals of Finite Length
Low-Dimensional Systems and Finite Crystals
Electronic States in Ideal Quantum Films
Electronic States in Ideal Quantum Wires
Electronic States in Ideal Finite Crystals or Quantum Dots
Epilogue
Concluding Remarks.
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