arXiv · 1508.01022
Electroabsorption study of index-defined semiconducting carbon nanotubes
Abstract
Electroabsorption spectroscopy of well-identified index-defined semiconducting carbon nanotubes is reported. The measurement of high definition electroabsorption spectra allows direct indexation with unique nanotube chirality. Results show that at least for a limited range of diameters, electroabsorption is directly proportional to the exciton binding energy of nanotubes. Electroabsorption is a powerful technique which directly probes into carbon nanotube excitonic states, and may become a useful tool for in situ study of excitons in future nanotube-based photonic devices such as electroabsorption modulators.
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Nicolas Izard, Etienne Gaufrès, Xavier Le Roux, Saïd Kazaoui, Yoichi Murakami, Delphine Marris-Morini, Eric Cassan, Shigeo Maruyama, Laurent Vivien. 2015-08-05. Electroabsorption study of index-defined semiconducting carbon nanotubes. https://doi.org/10.1051/epjap%2F2011110034
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