图书简介
This advanced textbook presents concepts at an introductory level but also highlights their relevance to a wide range of nanoscale semiconductor materials and devices. Sitting at the interface between engineering and physics, the book employs math and physics throughout, but always ensures that the presentation is relevant to real applications. The math is sufficiently simple to allow a wide range of scientists and engineers to follow the material. This book will also be unique as a textbook having, pedagogically useful questions and exercises in advanced topics such as quantum dots and twodimensional materials and will direct the reader to refer to earlier chapters to ensure a solid understanding of the physics involved in each topic.
Chapter 1. Quantum and Solid State Physics Introduction Summary Further reading Problems Chapter 2. Semiconductors and junctions Introduction Inorganic Semiconductor materials Extrinsic semiconductors Carrier transport in semiconductors Equilibrium and nonequilibrium dynamics Carrier diffusion and the Einstein equation Quasifermi energies Traps and carrier lifetimes The Hall Effect Introduction to the pn junction diode Metal semiconductor junctions Summary Further reading Problems Chapter 3. The Nanoscale MOSFET and Flash Memory Operating Principle Fabrication and selfalignment The MOS capacitor Transistor characteristics of long and short channel MOSFETS High K gate oxide Gate metals with high thermal budget Strained silicon FETs Flash memory Summary Further reading Problems Chapter 4. The Physics of Radiation Physics of light emission The Exciton in Crystals Indistinguishability Energy transfer Molecular excitons Summary Further reading Problems Chapter 5. The Quantum Dot Synthesis Quantum Confinement models Surface Passivation Vibrational energies Summary Further reading Problems Chapter 6. Molecular Electronics Introduction Organic molecules Polymeric materials Small molecule materials Polymer Organic Light Emitting Devices Small Molecule Organic Light Emitting Diode GuestHost systems Organic Solar Cells Summary Further reading Problems Chapter 7. One and Two dimensional semiconductor materials and devices Introduction The Transition Metal Dichalcogenides Graphene as a zero gap semiconductor Nanowire Devices Summary Further reading Problems Chapter 8. Surfaces and Interfaces Surface States and trapping Surface Passivation Porous Semiconductors Image Charges Quantized Image Potential States Surface Reconstruction Semiconductor Surface Functionalization Sensors Future Prospects Summary Further reading Problems Chapter 9. Magnetic Nanostructured Materials and Spintronics Introduction to magnetic ceramics Magnetic nanoparticles Dilute Magnetic Semiconductors Spintronics Topological Materials Quantum Hall Effect Spintronics Summary Further reading Problems
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