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商品コード: 9780198788362

Hybrid Phonons in Nanostructures

販売価格(税込): 8,267 円  (本体価格: 7,655 円+税)
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分野別 > 工学 > 電気電子工学

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書名

Hybrid Phonons in Nanostructures
著者・編者 Ridley, B.K.
出版社/発行元 Oxford University Press
発行年/月 2017年2月   
装丁 Hardcover
ページ数/巻数 208 ページ
ISBN 978-0-19-878836-2
発送予定 海外倉庫よりお取り寄せ 2-3週間以内に発送します

 

Desciption

 

The book provides a technical account of the basic physics of nanostructures, which are the foundation of the hardware found in all manner of computers. It will be of interest to semiconductor physicists and electronic engineers and advanced research students. Crystalline nanostructures have special properties associated with electrons and lattice vibrations and their interaction. The result of spatial confinement of electrons is indicated in the nomenclature of nonostructures: quantum wells, quantum wires, quantum dots. Confinement also has a profound effect on lattice vibrations. The documentation of the confinement of acoustic modes goes back to Lord Rayleigh's work in the late nineteenth century, but no such documentation exists for optical modes. It is only comparatively recently that any theory of the elastic properties of optical modes exists, and a comprehensive account is given in this book. A model of the lattice dynamics of the diamond lattice is given that reveals the quantitative distinction between acoustic and optical modes and the difference of connection rules that must apply at an interface. The presence of interfaces in nanostructures forces the hybridization of longitudinally and transversely polarized modes, along with, in polar material, electromagnetic modes. Hybrid acoustic and optical modes are described, with an emphasis on polar-optical phonons and their interaction with electrons. Scattering rates in single heterostructures, quantum wells and quantum wires are described and the anharmonic interaction in quantum dots discussed. A description is given of the effects of dynamic screening of hybrid polar modes and the production of hot phonons.

 

Contents:

 

Part 1: Basics
1: Acoustic Modes
2: Optical Modes
3: Polar Modes in Zinc Blende
4: Boundary Conditions
5: Scalar and Vector Fields

Part 2: Hybrid Modes in Nanostructures
6: Hybrid Modes in a Non-Polar Slab
7: Single Heterostructure
8: Quantum Well
9: Quantum Wire
10: Quantum Dot

Part 3: Electron-Phonon Interaction
11: General Remarks
12: Electrons
13: Scattering Rate in Single Heterostructure
14: Scattering Rate in a Quantum Well
15: Scattering Rate in a Quantum Wire
16: The Electron-Phonon Interactiong in a Quantum Dot
17: Coupled Modes
18: Hot Phonon Lifetime

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