4.6 Article

Ultraviolet photon absorption in single- and double-wall carbon nanotubes and peapods:: Heating-induced phonon line broadening, wall coupling, and transformation

Journal

PHYSICAL REVIEW B
Volume 76, Issue 5, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.76.054118

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Ultraviolet photon absorption has been used to heat single- and double-wall carbon nanotubes and peapods in vacuum. By increasing the laser intensity up to 500 mW, a downshift and a broadening of the optical phonons are observed corresponding to a temperature of 1000 degrees C. The UV Raman measurements are free of blackbody radiation. We find that the linewidth changes for the G(+) and G(-) bands differ considerably in single-wall carbon nanotubes. This gives evidence that the phonon decay process is different in axial and radial tube directions. We observe the same intrinsic linewidths of graphite (highly oriented pyrolytic graphite) for the G band in single- and double-wall carbon nanotubes. With increasing temperature, the interaction between the walls is modified for double-wall carbon nanotubes. Ultraviolet photon induced transformations of peapods are found to be different on silica and diamond substrates.

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