Jenö Sólyom, Attila Piróth9783540853152, 3540853154
The first volume deals with the atomic and magnetic structure and dynamics of solids, the second with those electronic properties that can be understood in the one-particle approximation, and the third with the effects due to interactions and correlations between electrons.
This volume is devoted to the electronic properties of metals and semiconductors in the independent-electron approximation. After a brief discussion of the free-electron models by Drude and Sommerfeld, the methods for calculating and measuring the band structure of Bloch electrons moving in the periodic potential of the crystal are presented. The dynamics of electrons in applied electric and magnetic fields is treated in the semiclassical approximation. The effects due to the quantization of the energy levels in strong magnetic field are also discussed. The overview of the transport and optical properties of metals and semiconductors is followed by a phenomenological description of superconductivity. The last chapter deals with the physics of semiconductor devices.
This comprehensive treatment provides ample material for upper-level undergraduate and graduate courses. It will also be a valuable reference for researchers in the field of condensed matter physics.
Table of contents :
1……Page 1
2……Page 20
3……Page 96
4……Page 128
5……Page 169
6……Page 213
7……Page 257
8……Page 295
9……Page 346
10……Page 374
11……Page 428
12……Page 465
13……Page 532
14……Page 593
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