Single air-suspended carbon nanotubes (length 2-5 mu m) exhibit high optical quantum efficiency (7-20%) for low intensity resonant pumping. Under ultrafast excitation (150 fs), emission dramatically saturates at very low exciton numbers (2-6), which is attributed to highly efficient exciton-exciton annihilation over micron-length scales. Similar saturation behavior for 4 ps pulse excitation shows nonlinear absorption is not a contributing factor. The absorption cross sections (0.6-1.8 X 10(-17) cm(2)/atom) are determined by fitting to a stochastic model for exciton dynamics.
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Univ Rochester, Dept Chem, Hutchison Hall,Box 270216, Rochester, NY 14627 USAUniv Rochester, Dept Chem, Hutchison Hall,Box 270216, Rochester, NY 14627 USA
Amori, Amanda R.
Rossi, Jamie E.
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Rochester Inst Technol, NanoPower Res Labs, 1 Lomb Mem Dr, Rochester, NY 14623 USA
Rochester Inst Technol, Dept Chem Engn, 1 Lomb Mem Dr, Rochester, NY 14623 USAUniv Rochester, Dept Chem, Hutchison Hall,Box 270216, Rochester, NY 14627 USA
Rossi, Jamie E.
Landi, Brian J.
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Rochester Inst Technol, NanoPower Res Labs, 1 Lomb Mem Dr, Rochester, NY 14623 USA
Rochester Inst Technol, Dept Chem Engn, 1 Lomb Mem Dr, Rochester, NY 14623 USAUniv Rochester, Dept Chem, Hutchison Hall,Box 270216, Rochester, NY 14627 USA
Landi, Brian J.
Krauss, Todd D.
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Univ Rochester, Dept Chem, Hutchison Hall,Box 270216, Rochester, NY 14627 USA
Univ Rochester, Inst Opt, Hutchison Hall,Box 270216, Rochester, NY 14627 USAUniv Rochester, Dept Chem, Hutchison Hall,Box 270216, Rochester, NY 14627 USA