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[×ÊÔ´] The Physics of Semiconductors (2nd ed, 2010)

Prof. Dr. Marius Grundmann
Universit¡§at Leipzig
Inst. f. Experimentelle Physik II
AG Halbleiterphysik
Linn´estr. 5
04103 Leipzig
Germany
grundmann@physik.uni-leipzig.de

Springer-Verlag Berlin Heidelberg 2010

The Physics of Semiconductors provides material for a comprehensive upper-level-undergraduate and graduate course on the subject, guiding readers to the point where they can choose a special topic and begin supervised research. The textbook provides a balance between essential aspects of solid-state and semiconductor physics, on the one hand, and the principles of various semiconductor devices and their applications in electronic and photonic devices, on the other. It highlights many practical aspects of semiconductors such as alloys, strain, heterostructures, nanostructures, that are necessary in modern semiconductor research but typically omitted in textbooks. For the interested reader some additional advanced topics are included, such as Bragg mirrors, resonators, polarized and magnetic semiconductors are included. Also supplied are explicit formulas for many results, to support better understanding. The Physics of Semiconductors requires little or no prior knowledge of solid-state physics and evolved from a highy regarded two-semester course at the University of Leipzig.

content:
1 Introduction
2 Bonds
3 Crystals
4 Defects
5 Mechanical Properties
6 Band Structure
7 Electronic Defect States
8 Transport
9 Optical Properties
10 Recombination
11 Heterostructures
12 External Fields
13 Nanostructures
14 Polarized Semiconductors
15 Magnetic Semiconductors
16 Organic Semiconductors
17 Graphene and Carbon Nanotubes
18 Dielectric Structures
19 Transparent Conductive Oxide Semiconductors
20 Diodes
21 Light-to-Electricity Conversion
22 Electricity-to-Light Conversion
23 Transistors



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