Devices based on low-dimensional semiconductor structures
著者
書誌事項
Devices based on low-dimensional semiconductor structures
(NATO ASI series, Partnership sub-series 3,
Kluwer Academic Publishers, c1996
大学図書館所蔵 全12件
  青森
  岩手
  宮城
  秋田
  山形
  福島
  茨城
  栃木
  群馬
  埼玉
  千葉
  東京
  神奈川
  新潟
  富山
  石川
  福井
  山梨
  長野
  岐阜
  静岡
  愛知
  三重
  滋賀
  京都
  大阪
  兵庫
  奈良
  和歌山
  鳥取
  島根
  岡山
  広島
  山口
  徳島
  香川
  愛媛
  高知
  福岡
  佐賀
  長崎
  熊本
  大分
  宮崎
  鹿児島
  沖縄
  韓国
  中国
  タイ
  イギリス
  ドイツ
  スイス
  フランス
  ベルギー
  オランダ
  スウェーデン
  ノルウェー
  アメリカ
注記
PRIORITY 2
内容説明・目次
内容説明
Low-dimensional semiconductor quantum structures are a major, high-technological development that has a considerable industrial potential. The field is developing extremely rapidly and the present book represents a timely guide to the latest developments in device technology, fundamental properties, and some remarkable applications. The content is largely tutorial, and the book could be used as a textbook.
The book deals with the physics, fabrication, characteristics and performance of devices based on low-dimensional semiconductor structures. It opens with fabrication procedures. The fundamentals of quantum structures and electro-optical devices are dealt with extensively. Nonlinear optical devices are discussed from the point of view of physics and applications of exciton saturation in MQW structures. Waveguide-based devices are also described in terms of linear and nonlinear coupling. The basics of pseudomorphic HEMT technology, device physics and materials layer design are presented. Each aspect is reviewed from the elementary basics up to the latest developments.
Audience: Undergraduates in electrical engineering, graduates in physics and engineering schools. Useful for active scientists and engineers wishing to update their knowledge and understanding of recent developments.
目次
- Preface. 1. Fabrication Procedures. Solid Source Molecular Beam Epitaxy
- J.F. Rochette. Using Gaseous Sources in Molecular Beam Epitaxy
- C.W. Tu. 2. Fundamentals on Quantum Structures for Electro-Optical Devices. Optical Properties of Heterostructures under an Electric Field
- P. Tronc. The Role of Spontaneous Emission in Laser Diode Operation
- P. Blood. MBE Growth of (In, Ga)As Self-Assembled Quantum Dots for Optoelectronic Applications
- V.M. Ustinov, et al. Exciton and Magnetoexciton Luminescence in Ge-Ge1-x Six Multiple Quantum Well Structures
- N.G. Kalugin, et al. The Physics of Quantum Well Infrared Detectors
- E. Rosencher, et al. Semimagnetic Quantum Wells and Superlattices
- M. Averous. Surface, Leaky and Singular Magnetoplasmons along the Interface of Gyrotropic Semiconductor
- S.T. Ivanov, et al. Optical and Theoretical Assessment of GaAs Quantum Wells Having Superlattices as Barrier Layers
- V. Donichev, et al. Anisotropy of Optical Characteristics of Low-Dimensional and Bulk Many-Valley Semiconductors
- A. Svizhenko, et al. Hot Hole Effects in Strained Multi-Quantum-Well Heterostructures Ge/GeSi
- V.Ya. Aleshkin, et al. Enhancement of Average Velocity of Hot Carriers in Saw-Toothed Heterostructure
- A.B. Kozyrev, V.A. Kozlov. Path-Integral Calculation of the Electron Density of States in MIS- Structures
- G. Slavcheva, Y. Yanchev. 3. Nonlinear Optical Devices. Physics and Applications of Exciton Saturation in MQW Structures
- A. Miller, et al. Interferometer with Nonlinear Frequency Doubling Mirrors as Lossless All-Optical Switching Device
- S. Saltiel, et al. Waveguide-Based Devices: Linear and Nonlinear Coupling
- A.D. Boardman, K. Xie. Waveguide Mach-Zehnder Intensity Modulator Produced via Proton Exchange Technology in LiNbO3
- S. Tonchev, et al. Evanescent Field Coupling Between a Single Mode Optical Fiber and a Planar Waveguide
- A. Andreev, et al. 4. Pseudomorphic HETM. Pseudomorphic HETMS: Device Physics and Materials Layer Design
- T. Grave. Basics of Pseudomorphic HETSM Technology and Numerical Simulation
- A. Asenov, et al. Index.
「Nielsen BookData」 より