Electrons and Holes in Semiconductors: With Applications to Transistor Electronics |
Contents
INTRODUCTION TO | 1 |
CHAPTER 2 | 21 |
THE TRANSISTOR AS A CIRCUIT ELEMENT | 27 |
Copyright | |
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acceptors applied approximation atoms average Bardeen behavior Bloch wave boundary conditions Brillouin zone Chapter charge collector collision conduction band consider corresponding CRYSTAL MOMENTUM derived discussed in Section distribution donors eigenfunctions electric field electron volts electrons and holes energy bands energy levels energy surfaces equal equilibrium equivalent circuit excess electron expression Fermi level filament flow formula frequency germanium given group velocity h 2a Hall effect hole current hole density holes and electrons impurity injected integral lattice constant magnetic fields matrix element mean free metal mobility motion n-region n-type negative normal modes number of electrons obtained oscillators p-n junctions P₁ particle Phys positive problem produced quantum mechanics recombination relationship represents result sample semiconductor Shockley shown in Figure silicon solution temperature theory thermal tion U₁ unit cell valence valence-bond band vector velocity voltage wave function wave-packet zero



