| Preface | p. ix |
| Introduction | p. xiii |
| Superlattice | p. 1 |
| The Birth of the Man-Made Superlattice | p. 1 |
| A Model for the Creation of Man-Made Energy Bands | p. 4 |
| Transport Properties of a Superlattice | p. 6 |
| More Rigorous Derivation of the NDC | p. 6 |
| Response of a Time-Dependent Electric Field and Bloch Oscillation | p. 10 |
| NDC from the Hopping Model and Electric Field-Induced Localization | p. 16 |
| Experiments | p. 27 |
| Type-III Superlattice (Historically Type-II Superlattice) | p. 33 |
| Physical Realization and Characterization of a Superlattice | p. 44 |
| Summary | p. 52 |
| Resonant Tunneling via Man-Made Quantum Well States | p. 57 |
| The Birth of Resonant Tunneling | p. 57 |
| Some Fundamentals | p. 61 |
| Conductance from the Tsu-Esaki Formula | p. 66 |
| Tunneling Time from the Time-Dependent Schrödinger Equation | p. 67 |
| Damping in Resonant Tunneling | p. 76 |
| Very Short l and w for an Amorphous QW | p. 97 |
| Self-Consistent Potential Correction of DBRT | p. 99 |
| Experimental Confirmation of Resonant Tunneling | p. 103 |
| Instability in RTD | p. 104 |
| Summary | p. 111 |
| Optical Properties and Raman Scattering in Man-Made Quantum Systems | p. 115 |
| Optical Absorption in a Superlattice | p. 115 |
| Photoconductivity in a Superlattice | p. 121 |
| Raman Scattering in a Superlattice and QW | p. 124 |
| Summary | p. 140 |
| Dielectric Function and Doping of a Superlattice | p. 143 |
| Dielectric Function of a Superlattice and a Quantum Well | p. 143 |
| Doping a Superlattice | p. 147 |
| Summary | p. 151 |
| Quantum Step and Activation Energy | p. 153 |
| Optical Properties of Quantum Steps | p. 153 |
| Determination of Activation Energy in Quantum Wells | p. 159 |
| Summary | p. 163 |
| Semiconductor Atomic Superlattice (SAS) | p. 165 |
| Silicon-Based Quantum Wells | p. 166 |
| Si-Interface Adsorbed Gas (IAG) Superlattice | p. 167 |
| Amorphous Silicon/Silicon Oxide Superlattice | p. 170 |
| Silicon-Oxygen (Si-O) Superlattice | p. 171 |
| Estimate of the Band-Edge Alignment Using Atomic States | p. 176 |
| Estimate of the Band-Edge Alignment With HOMO-LUMO | p. 177 |
| Estimation of Strain from a Ball-and-Stick Model | p. 179 |
| Electroluminescence and Photoluminescence | p. 190 |
| Transport through a Si-O Superlattice | p. 195 |
| A Si-O Superlattice and Other Si/Ge, Si/Co, Si/C Monolayer Superlattice | p. 197 |
| Summary | p. 200 |
| Si Quantum Dots | p. 203 |
| Energy States of Silicon Quantum Dots | p. 203 |
| Resonant Tunneling in Silicon Quantum Dots | p. 210 |
| Slow Oscillations and Hysteresis | p. 216 |
| Avalanche Multiplication from Resonant Tunneling | p. 224 |
| Influence of Light and Repeatability under Multiple Scans | p. 228 |
| Many Body Effects in Coupled Quantum Dots | p. 230 |
| Summary | p. 232 |
| Capacitance, Dielectric Constant, and Doping Quantum Dots | p. 235 |
| Capacitance of Silicon Quantum Dots | p. 235 |
| Dielectric Constant of a Silicon Quantum Dot | p. 244 |
| Doping a Silicon Quantum Dot | p. 253 |
| Capacitance: Spatial Symmetry of Discrete Charge Dielectric | p. 258 |
| Summary | p. 262 |
| Porous Silicon | p. 267 |
| Porous Silicon: Light-Emitting Silicon | p. 267 |
| PSi: Other Applications | p. 272 |
| Summary | p. 274 |
| Some Novel Devices | p. 277 |
| Field Emission with Quantum Well and Nanometer Thick Multilayer Structured Cathode | p. 277 |
| Saturation Intensity of PbS QDs | p. 282 |
| Multipole Electrode Heterojunction Hybrid Structures | p. 286 |
| Some Fundamental Issues: Mainly Difficulties | p. 290 |
| Comments on Quantum Computing | p. 292 |
| Recent Activities in Superlattice | p. 293 |
| Graphene Adventure | p. 296 |
| Summary | p. 299 |
| Quantum Impedance of Electrons | p. 305 |
| Landauer Conductance Formula | p. 305 |
| Electron Quantum Waveguide | p. 306 |
| Wave Impedance of Electrons | p. 310 |
| Summary | p. 319 |
| Why Super and Why Nano? | p. 321 |
| Finite Solid, Giant Molecule, and Composite | p. 321 |
| Generalization of Superlattices into Components | p. 321 |
| QDs as Individual Components | p. 323 |
| Size Requirements | p. 323 |
| Superlattice and the World of Nano | p. 324 |
| Some New Opportunities | p. 325 |
| A Word of Caution | p. 326 |
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