Quantum Theory of the Optical and Electronic Properties of Semiconductors, 4/e (Paperback)
Hartmut Haug, Stephan W. Koch
- 出版商: World Scientific Pub
- 出版日期: 2004-04-01
- 售價: $1,050
- 貴賓價: 9.8 折 $1,029
- 語言: 英文
- 頁數: 468
- 裝訂: Paperback
- ISBN: 9812387560
- ISBN-13: 9789812387561
-
相關分類:
半導體、量子 Quantum
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商品描述
This invaluable textbook presents the basic
elements needed to understand and research into semiconductor physics. It deals
with elementary excitations in bulk and low-dimensional semiconductors,
including quantum wells, quantum wires and quantum dots. The basic principles
underlying optical nonlinearities are developed, including excitonic and
many-body plasma effects. Fundamentals of optical bistability, semiconductor
lasers, femtosecond excitation, the optical Stark effect, the semiconductor
photon echo, magneto-optic effects, as well as bulk and quantum-confined
FranzKeldysh effects, are covered. The material is presented in sufficient
detail for graduate students and researchers with a general background in
quantum mechanics.
Contents:
- Oscillator Model
- Atoms in a Classical Light Field
- Periodic Lattice of Atoms
- Mesoscopic Semiconductor Structures
- Free Carrier Transitions
- Ideal Quantum Gases
- Interacting Electron Gas
- Plasmons and Plasma Screening
- Retarded Green's Function for Electrons
- Excitons
- Polaritons
- Semiconductor Bloch Equations
- Excitonic Optical Stark Effect
- Wave-Mixing Spectroscopy
- Optical Properties of a Quasi-Equilibrium ElectronHole Plasma
- Optical Bistability
- Semiconductor Laser
- Electroabsorption
- Magneto-Optics
- Quantum Dots
- Coulomb Quantum Kinetics
商品描述(中文翻譯)
這本寶貴的教科書介紹了理解和研究半導體物理所需的基本元素。它涵蓋了體材料和低維半導體中的基本激發,包括量子井、量子線和量子點。該書還介紹了光非線性的基本原理,包括激子和多體等離子體效應。內容還包括光雙穩態、半導體激光器、飛秒激發、光斯塔克效應、半導體光子回聲、磁光效應,以及體材料和量子限制的FranzKeldysh效應。該書的內容詳細到足以滿足具有量子力學一般背景的研究生和研究人員的需求。
目錄:
- 振盪子模型
- 受經典光場影響的原子
- 周期性原子晶格
- 中小尺度半導體結構
- 自由載子跃迁
- 理想量子氣體
- 相互作用電子氣體
- 等離子體子和等離子體屏蔽
- 電子的遲滯格林函數
- 激子
- 偏振子
- 半導體布洛赫方程
- 激子光斯塔克效應
- 波混合光譜學
- 幾乎平衡的電子-空穴等離子體的光學性質
- 光雙穩態
- 半導體激光器
- 電吸收
- 磁光學
- 量子點
- 庫倫量子動力學