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PHYSICAL REVIEW B 79, 205434 共2009兲 Resonant coherent phonon spectroscopy of single-walled carbon nanotubes G. D. Sanders,1 C. J. Stanton,1 J.-H. Kim,2 K.-J. Yee,2 Y.-S. Lim,3 E. H. Hároz,4 L. G. Booshehri,4 J. Kon
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Document Date: 2009-05-29 16:24:21


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Gainesville / Valencia / /

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Japan / United States / South Korea / Wales / /

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University of Florida / Chungnam National University / Rice University / Konkuk University / Tohoku University / /

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tight-binding energy dispersion relations / photon energy / transition energy / carrier relaxation / carrier relaxation effects / carrier distribution functions / periodogram algorithm / hot carrier distributions / carrier density / slow carrier relaxation effects / carrier densities / negative energy / graphene energy dispersion relations / important practical applications / probe photon energy / positive energy / lowest energy / pump energy density u共t / band-gap energy / energy / technological applications / timedependent energy density / pump energy / carrier dynamics / probe-energy-dependent phase reversal / kinetic energy / carbon nanotube electronic devices / pump photon energy / Energy dispersion relations / resonance energy / computed energy dispersion relations / force field potential energy / probe energy dependence / carbon nanotube solution / /

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Fermi / /

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Rice University / Houston / Konkuk University / Department of Physics / U.S. Securities and Exchange Commission / Tohoku University / Sendai / Chungnam National University / University of Florida / /

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Van Hove / Ajiki / /

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model / extended tight-binding model described / valence force field model for the phonons / /

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Texas / Florida / /

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semiconductor / Lomb periodogram algorithm / laser / lasers / dielectric / spectroscopy / simulation / /

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