Page 341 - Semiconductor For Micro- and Nanotechnology An Introduction For Engineers
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quantized phonon level 85
quantum 182
lasers 91
quantum mechanical quantum-well semiconductor
quasi-particle 182
analysis 82 electron 182
quantum mechanics hole 182
harmonic oscillator 121 phonon 182
quantum number 103 photon 182
quantum state 181 quasi-static equations 154
R radio signals 143 relativity 144
rate relaxation
transition 239, 245 energy 201, 203
recombination 309, 310, 321 momentum 200, 203
recombination rate 223, 227 particle 203
reconstruction 90 representation 99, 170
reflection integral 145
particle 117 q 119
reflexivity reservoir
particle 117 heat 174, 176
relation resonance 117
Debye 86 root sampling
dispersion 71, 73, 76 method 77
relative permeability 147 rotation free 149
relative permittivity 147 r-th order moment 198
S scalar potential 149 solution
scattering 192, 195 analytical 109
instantaneous 196 fundamental 151
nonlinear 196 harmonic 116
process 195 trial 115
Schrödinger 102 spatial density 198
Schrödinger equation 50, 96, 102, specific heat
107, 111, 119, 120, 123, approximation 86
127, 128, 140, 166 spectrum 184
nonlinear 126 continuous 112
plane wave solution 115 continuous electron 106
stationary 133 energy 104, 184
time dependent solution 127 speed of sound
time independent 119 isotropic 85
second order moment 198 spherical coordinate 173
semi-classical Boltzmann transport Spherical Harmonic 230
equation 192 spherical harmonic 50, 51, 230
silicon 27 spherical harmonic function 124
band structure 140 spin 193
dioxide 27 square-integrable 98
single-atom crystal 42 wavefunction 113
singular point 77 state
singularities available 178
dispersion diagram 76 bound 116
solid state 169 density 173
338 Semiconductors for Micro and Nanosystem Technology