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  xmlns:dcterms="http://purl.org/dc/terms/"><dc:Title>Graphene and carbon nanotubes : ultrafast relaxation dynamics and optics / Ermin Malic and Andreas Knorr, with contribution by Stephan Winnerl. [electronic resource]</dc:Title>
<dc:Creator>Malic, Ermin.</dc:Creator>
<dc:Creator>Knorr, Andreas (Physicist)</dc:Creator>
<dc:Creator>Winnerl, Stephan.</dc:Creator>
<dc:Subject>Graphene.</dc:Subject>
<dc:Subject>Nanostructures.</dc:Subject>
<dc:Subject>Nanotubes.</dc:Subject>
<dc:Subject>TA418.9.N35</dc:Subject>
<dc:Subject>620.5</dc:Subject>
<dc:Description>4.6.2 Isotropic Carrier Distribution.</dc:Description>
<dc:Description>Includes bibliographical references and index.</dc:Description>
<dc:Description>Print version record.</dc:Description>
<dc:Description>The book introduces the reader into the ultrafast nanoworld of graphene and carbon nanotubes, including their microscopic tracks and unique optical finger prints. The author reviews the recent progress in this field by combining theoretical and experimental achievements. He offers a clear theoretical foundation by presenting transparently derived equations. Recent experimental breakthroughs are reviewed. This makes the book suitable for a wider audience, from graduate students and to researchers in academia and industry working on optoelectronic devices, renewable energies, and in the semicond.</dc:Description>
<dc:Publisher>Weinheim : Wiley,</dc:Publisher>
<dc:Date>2013.</dc:Date>
<dc:Date>2013.</dc:Date>
<dc:Date>2013</dc:Date>
<dc:Type>Text</dc:Type>
<dc:Format>1 online resource (345 pages)</dc:Format>
<dc:Identifier>http://onlinelibrary.wiley.com/book/10.1002/9783527658749</dc:Identifier>
<dc:Language>eng</dc:Language>
<dc:Relation>Graphene and carbon nanotubes : ultrafast optics and relaxation dynamics.</dc:Relation>
<dc:Relation>Graphene and carbon nanotubes : ultrafast optics and relaxation dynamics.</dc:Relation>

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