The second, updated edition of this essential reference book provides a wealth of detail on a wide range of electronic and photonic materials, starting from fundamentals and building up to advanced topics and applications. Its extensive coverage, with clear illustrations and applications, carefully selected chapter sequencing and logical flow, makes it very different from other electronic materials handbooks. It has been written by professionals in the field and instructors who teach the subject at a university or in corporate laboratories.
The Springer Handbook of Electronic and Photonic Materials, second edition, includes practical applications used as examples, details of experimental techniques, useful tables that summarize equations, and, most importantly, properties of various materials, as well as an extensive glossary. Along with significant updates to the content and the references, the second edition includes a number of new chapters such as those covering novel materials and selected applications.
This handbook is a valuable resource for graduate students, researchers and practicing professionals working in the area of electronic, optoelectronic and photonic materials.
Provides engineers and scientists across a wide range of disciplines concerned with electronic materials a highly organized, self-contained, authoritative desk reference of materials properties, processing, and characterization techniques
Focuses on physical concepts rather than extensive mathematical derivations
Provides an extensive glossary of technical terms to facilitate non-specialist use
Includes thousands of up-to-date references
Safa Kasap
Electronic Materials Electronics and Microelectronics Materials Science Reference Book Optoelectronics Photonic Materials Properties of Electronic Materials Properties of Photonic Materials Solid State Physics Surfaces and Thin Films
“Semiconductor specialists will find a lot of useful and up-to-date information in this volume. It has good sections on the most contemporary silicon technology and all of the III – V semiconductors are well represented along with the various structures that are grown in these materials. … there is much in this book that will have a lasting use and it is one that could usefully be in the office rather than the reference shelves of a library.” (P.J. Dobson, Contemporary Physics, Vol. 49 (01), January-February, 2008)
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