Quantum Theory of the Optical and Electronic Properties of Semiconductors

Quantum Theory of the Optical and Electronic Properties of Semiconductors
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DOI:
10.1142/1977
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发表时间:
1990-04
期刊:
--
影响因子:
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通讯作者:
H. Haug;S. Koch
H. Haug;S. Koch
中科院分区:
其他
文献类型:
--
作者:
H. Haug;S. Koch

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这个修订的第二版的“量子理论的光学和电子性质的半导体”提出了基本要素需要了解和从事研究半导体物理。在这个修订的第二版印刷错误得到纠正,并增加了一些新的和更详细的材料。为了处理的价带结构的半导体,介绍了k.p.理论和相关的描述,在卢廷格哈密顿量。介观半导体结构的介绍性章节讨论了空间量子限制引起的包络函数近似的修改也包括在内。许多结果是并行开发的第一块材料,然后准二维量子威尔斯,准一维量子线。半导体量子点在单独的一章中处理。半导体中与时间有关的相干现象的讨论已经大大扩展,包括了一节处理半导体中光子回波的理论描述。增加了磁吸收一章,讨论了二维系统中的磁激子和磁等离子体。由于电子与光学声子的相互作用的动力学的章节已被延长。该材料为具有量子力学一般背景的研究生和研究人员提供了足够的细节,并针对固态物理学家,工程师,材料和光学科学家。
This revised second edition on the "Quantum Theory of the Optical and Electronic Properties of Semiconductors" presents the basic elements needed to understand and engage in research in semiconductor physics. In this revised second edition misprints are corrected and some new and more detailed material is added. In order to treat the valence-band structure of semiconductors, an introduction to the k.p. theory and the related description in terms of the Luttinger Hamiltonian is included. An introductory chapter on mesoscopic semiconductor structures discussing the modifications of the envelope function approximation caused by the spatial quantum confinement is also included. Many results are developed in parallel first for bulk material, and then for quasi-two-dimensional quantum wells, and for quasi-one-dimensional quantum wires. Semiconductor quantum dots are treated in a separate chapter. The discussion of time-dependent and coherent phenomena in semiconductors has been considerably extended by including a section dealing with the theoretical description of photon echoes in semiconductors. A new chapter on magneto-absorption has been added, in which magneto-excitons and magneto-plasmas in two-dimensional systems are discussed. The chapter on electron kinetics due to the interaction with longitudinal-optical phonons has been extended. The material is presented in sufficient detail for graduate students and researchers who have a general background in quantum mechanics, and is aimed at solid state physicists, engineers, materials and optical scientists.