Graphene
carbon in two dimensions
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Author
Publication
2012 - Cambridge University Press, New York, New York (State)
Language
English
Word Count
0 words, Guess
Page Count
0 pages
Identifiers
- Internet Archivegraphenecarbontw00kats
- Internet Archivegraphenecarbontw00kats_215
- ISBN-139780521195409
- ISBN-100521195403
- Library of Congress Control Number2011046203
and 3 more
- Better World Books9780521195409
- Better World BooksKS-282-288
- Open LibraryOL25121793M
Classifications
- DDC546/.681
- LCCQD181.C1 K29 2012
Description
"Graphene is the thinnest known material, a sheet of carbon atoms arranged in hexagonal cells a single atom thick, and yet stronger than diamond. It has potentially significant applications in nanotechnology, 'beyond-silicon' electronics, solid-state realization of high-energy phenomena and as a prototype membrane which could revolutionise soft matter and 2D physics. In this book, leading graphene research theorist Mikhail Katsnelson presents the basic concepts of graphene physics. Topics covered include Berry phase, topologically protected zero modes, Klein tunneling, vacuum reconstruction near supercritical charges, and deformation-induced gauge fields. The book also introduces the theory of flexible membranes relevant to graphene physics and discusses electronic transport, optical properties, magnetism and spintronics. Standard undergraduate-level knowledge of quantum and statistical physics and solid state theory is assumed. This is an important textbook for graduate students in nanoscience and nanotechnology and an excellent introduction for physicists and materials science researchers working in related areas"--
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