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Titlebook: Carbon Nanotubes; Advanced Topics in t Ado Jorio,Gene Dresselhaus,Mildred S. Dresselhaus Book 2008 Springer-Verlag Berlin Heidelberg 2008 F

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Excitonic States and Resonance Raman Spectroscopy of Single-Wall Carbon Nanotubes,s. We comparethese results with former theoretical results obtained on the basis of theelectron–hole pair picture. We show that the Raman intensity shows a uniquechiral-angle and diameter dependence for single-wall carbon nanotubes.
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Carbon-Nanotube Optoelectronics,iative decay to free carriersleading to photoconductivity are discussed. The influence of external electricfields and of environmental interactions on excited nanotubes is considered.Finally, the possible technological uses of carbon nanotubes as nanometer scalelight sources and photocurrent and photovoltage detectors are discussed.
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https://doi.org/10.1007/978-3-642-41449-7 and spin-dependentballistic transport. We move on to explore the properties of single and coupledcarbon-nanotube quantum dots. Spin and orbital (isospin) magnetic moments lead tofourfold shell structure and unusual Kondo phenomena. We conclude with adiscussion of unanswered questions and a look to future research directions.
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Introduction to the Important and Exciting Aspects of Carbon-Nanotube Science and Technology,pproaching a “phase-transitioncritical point”. Carbon nanotubes have been a model system for studyingphysics and for developing new measurement tools. The field is now mature formaking the transition from nanoscience to nanotechnology, as we show here.
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Electrical Transport in Single-Wall Carbon Nanotubes, and spin-dependentballistic transport. We move on to explore the properties of single and coupledcarbon-nanotube quantum dots. Spin and orbital (isospin) magnetic moments lead tofourfold shell structure and unusual Kondo phenomena. We conclude with adiscussion of unanswered questions and a look to future research directions.
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