Electronic Conduction: Classical and Quantum Theory to Nanoelectronic Devices
Electronic Conduction: Classical and Quantum Theory to Nanoelectronic Devices
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- More about Electronic Conduction: Classical and Quantum Theory to Nanoelectronic Devices
Electronic Conduction: Classical and Quantum Theory to Nanoelectronic Devices provides a comprehensive introduction to the fundamental principles of electronic conduction in microelectronic and nanoelectronic devices, with an emphasis on integrating the quantum aspects of conduction. It is suitable for electrical engineers and material scientists, and covers post-Silicon devices such as the GaAs MOSFET, the CNT-FET, and the vacuum transistor.
Format: Paperback / softback
Length: 296 pages
Publication date: 31 May 2023
Publisher: Taylor & Francis Ltd
Electronic Conduction: Classical and Quantum Theory to Nanoelectronic Devices is a comprehensive and concise introduction to the fundamental principles of electronic conduction in microelectronic and nanoelectronic devices, with a strong emphasis on integrating the quantum aspects of conduction. The book begins by presenting the classical theory of conduction, including introductory chapters on quantum mechanics and the solid state, before moving on to a comprehensive presentation of essential theory for understanding modern electronic devices.
The authors' unique approach is highly applicable to microscale and nanoscale device simulation, particularly in light of the recent explosion in the nanoelectronics field. Key features of the book include:
Self-contained: The book provides a complete account of classical and quantum aspects of conduction in nanometer-scale devices, making it suitable for electrical engineers and material scientists with no prior course in semiconductors.
Emphasises core principles: The book focuses on core principles, allowing readers to grasp the fundamental concepts of electronic conduction in nanoscale devices.
Highlights the bridge to modern electronics: The book begins by presenting the physics of electronic conduction, followed by the engineering complications related to quantum behaviour. This approach helps readers understand the fundamental principles behind modern electronic devices.
Includes clear, illustrative diagrams: The book is accompanied by numerous clear and illustrative diagrams that enhance understanding and facilitate visualisation of complex concepts.
Offers chapter problem sets: Each chapter includes a set of problem sets that encourage readers to apply the theoretical knowledge gained in the chapter to real-world scenarios.
Provides an account of post-Silicon devices: The book covers post-Silicon devices such as the GaAs MOSFET, the CNT-FET, and the vacuum transistor, showcasing their applications and significance in modern electronics.
Discusses issues for conducting research: The book addresses various issues that will enable readers to conduct their own research in the field of electronic conduction in nanoelectronic devices.
In conclusion, Electronic Conduction: Classical and Quantum Theory to Nanoelectronic Devices is an essential resource for anyone interested in understanding the fundamental principles of electronic conduction in microelectronic and nanoelectronic devices. With its comprehensive coverage, practical examples, and emphasis on integrating quantum aspects, the book provides a solid foundation for further research and development in this rapidly evolving field.
Weight: 582g
Dimension: 178 x 255 x 20 (mm)
ISBN-13: 9780367639198
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