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The transistor is the key enabler of modern electronics. Progress in transistor scaling has pushed channel lengths to the nanometer regime where traditional approaches to device physics are less and less suitable. These lectures describe a way of understanding MOSFETs and other transistors that is much more suitable than traditional...
The book provides a technical account of the basic physics of those nanostructures that are the foundation of the hardware of all manner of computers. It will be read by semiconductor physicists and electronic engineers and advanced research students world-wide.
Plasma etching has long enabled the perpetuation of Moore's Law. Today, etch compensation helps to create devices that are smaller than 20 nm. But, with the constant downscaling in device dimensions and the emergence of complex 3D structures like FinFet, Nanowire and stacked nanowire at longer term and sub 20...
By E. L. Wolf
A complete description of the science and applications of graphene, a revolutionary two-dimensional one-atom-thick material of exceedingly high electrical conductivity and tensile strength.
A much-needed update on complex high-temperature superconductors, focusing on materials aspects; this timely book coincides with a recent major break-through of the discovery of iron-based superconductors.
For undergraduate electrical engineering students or for practicing engineers and scientists interested in updating their understanding of modern electronics One of the most widely used introductory books on semiconductor materials, physics, devices and technology, Solid State Electronic Devices aims to: 1 develop basic semiconductor physics concepts, so students can better...
By Haiyin Sun
This book offers the reader a practical guide to the control and characterization of laser diode beams. Laser diodes are the most widely used lasers, accounting for 50% of the global laser market. Correct handling of laser diode beams is the key to the successful use of laser diodes, and...
The book introduces scientists and graduate students to superconductivity, and highlights the differences arising from the different dimensionality of the sample under study. It focuses on transport in one-dimensional superconductors, describing relevant theories with particular emphasis on experimental results.
By Umar Gaya
This book introduces the essential principles of photocatalysis and provides an update on its scientific foundations, research advances, current opinions, and interpretations. It explains reaction mechanisms from first principles.
This book offers comprehensive coverage of novel bismuth-related materials and devices. It provides a foundation for the development of future optoelectronic, thermoelectric, and electronic devices.