The book “Dopants and Defects in Semiconductors, Second Edition” provides an in-depth understanding of semiconductor physics, particularly focusing on dopants and defects within semiconductor materials. Authored by Matthew D. McCluskey and Eugene E. Haller, this book offers comprehensive coverage of fundamental knowledge in the field of semiconductors, including the latest advancements and applications.
This revised edition includes a new chapter that delves into the recent technologies and applications of semiconductors. With additional chapter topics and worked examples, the book provides detailed insights into solid-state lighting, such as LEDs and laser diodes. The authors present a unified overview of dopants and defects, laying a strong foundation for experimental techniques and the theory of defects in semiconductors.
Matthew D. McCluskey is a professor at Washington State University, specializing in Physics and Astronomy, while Eugene E. Haller is a professor emeritus at the University of California, Berkeley, and a member of the National Academy of Engineering.
For those studying or working in the field of semiconductor physics, “Dopants and Defects in Semiconductors, Second Edition” serves as a valuable resource for gaining a deeper understanding of the principles and applications of semiconductors.
FAQs
1. What topics are covered in the book?
The book covers fundamental knowledge of semiconductors, dopants, defects, as well as the latest technologies and applications in the field.
2. Who are the authors of the book?
The book is authored by Matthew D. McCluskey and Eugene E. Haller.
3. Is this book suitable for beginners in semiconductor physics?
Yes, the book provides a broad introductory overview suitable for beginners, along with detailed examples and explanations.
Conclusion
“Dopants and Defects in Semiconductors, Second Edition” is a comprehensive resource for individuals interested in gaining a thorough understanding of semiconductor physics. With its updated coverage and detailed insights into dopants and defects in semiconductor materials, this book is valuable for students, researchers, and professionals in the field. The authors’ expertise and clear explanations make this book a must-read for anyone looking to delve deeper into semiconductor physics.
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