Basic Semiconductor Physics
Hamaguchi, Chihiro
Sold by thebookforest.com, San Rafael, CA, U.S.A.
AbeBooks Seller since January 3, 2023
Used - Hardcover
Condition: Used - Very good
Ships within U.S.A.
Quantity: 1 available
Add to basketSold by thebookforest.com, San Rafael, CA, U.S.A.
AbeBooks Seller since January 3, 2023
Condition: Used - Very good
Quantity: 1 available
Add to basketText block firm and clean, binding unblemished, boards straight, without highlights or underlining. Without any discs, access codes or extra items. Very clean, very nice example. Well packaged and promptly shipped from California. Partnered with Friends of the Library since 2010.
Seller Inventory # BAY_17_SH_060898
This book presents a detailed description of the basic semiconductor physics. The reader is assumed to have a basic command of mathematics and some elementary knowledge of solid state physics. The text covers a wide range of important phenomena in semiconductors, from the simple to the advanced. The reader can understand three different methods of energy band calculations, empirical pseudo-potential, k.p perturbation and tight-binding methods. The effective mass approximation and electron motion in a periodic potential, Boltzmann transport equation and deformation potentials used for full band Monte Carlo simulation are discussed. Experiments and theoretical analysis of cyclotron resonance are discussed in detail because the results are essential to the understanding of semiconductor physics. Optical and transport properties, magneto-transport, two dimensional electron gas transport (HEMT and MOSFET), and quantum transport are reviewed, explaining optical transition, electron phonon interactions, electron mobility. Recent progress in quantum structures such as two-dimensional electron gas, superlattices, quantum Hall effect, electron confinement and the Landauer formula are included. The Quantum Hall effect is presented with different models. In the second edition, the addition energy and electronic structure of a quantum dot (artificial atom) are explained with the help of Slater determinants. Also the physics of semiconductor Lasers is described in detail including Einstein coefficients, stimulated emission, spontaneous emission, laser gain, double heterostructures, blue Lasers, optical confinement, laser modes, strained quantum wells lasers which will give insight into the physics of various kinds of semiconductor lasers, in addition to the various processes of luminescence.
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