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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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B. Angermann,H. D. Doebner,J. Tolar better than their competitors for specific applications. We willdiscuss several examples of the already existing commercial uses of nanotubesand then point out feasible nanotube applications for the near term (withinten years) and the long term (beyond ten years). In our discussions of theapplicati
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Stig I. Andersson,Heinz-Dietrich Doebneronment forscientific and industrial development. Every major country has its own metrologyinstitute to support companies in increasing their productivity and the quality oftheir goods and services. The fast development of carbon-nanotube science andapplications urged studies on metrology, standardiz
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https://doi.org/10.1007/978-3-642-41449-7sictheory and key physical differences between two common types of electronicexcitations are developed: single-particle excitations (quasiparticles) measured intransport or photoemission experiments, and electron–hole pair excitations (excitonicstates) measured in optical experiments. We show, throu
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https://doi.org/10.1007/978-3-642-41449-7nthe effect of using different kinds of carbon nanotube samples. Resonance Ramanprofiles (intensity vs. excitation energy), associated with different types of carbonnanotubes have been obtained from a quasicontinuous change of the excitationenergy. Experimental plots of optical transition energies a
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https://doi.org/10.1007/978-3-642-41449-7asic scienceof SWNTs, as well as the promise of applications. The simplest free-carrier models ofperfect semiconducting SWNTs in vacuum predict that they have direct bandgapsand therefore should be efficient light absorbers and emitters. Experimentally,isolating SWNTs from environmental interactions
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https://doi.org/10.1007/978-3-642-41449-7tubes.Ultrafast spectroscopy is used to study the dynamics and kinetics of scattering andrelaxation processes from the femtosecond (1fs ≡ 10. s) to the picosecondtimescale. This provides crucial information on carrier and exciton dynamics thatunderpin a variety of potential applications of carbon na
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