Loss spectra of graphite-related systems: A multiwall carbon nanotube, a single-wall carbon nanotube bundle, and graphite layers

Authors
Citation
Fl. Shyu et Mf. Lin, Loss spectra of graphite-related systems: A multiwall carbon nanotube, a single-wall carbon nanotube bundle, and graphite layers, PHYS REV B, 62(12), 2000, pp. 8508-8516
Citations number
56
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
PHYSICAL REVIEW B
ISSN journal
01631829 → ACNP
Volume
62
Issue
12
Year of publication
2000
Pages
8508 - 8516
Database
ISI
SICI code
0163-1829(20000915)62:12<8508:LSOGSA>2.0.ZU;2-8
Abstract
The pi-electron excitations are studied for a multiwall carbon nanotube, a single-wall carbon nanotube bundle with finite nanotubes, and graphite laye rs. The loss spectra of the nanotube systems exhibit several plasmon peaks. The most prominent one is the pi plasmon, and the others are the interband plasmons. The latter are absent in graphite layers. The pi plasmon depends on the number of carbon nanotubes or graphite layers (N), the transferred momentum (q), and the transferred angular momentum (L). The intertube or in terlayer Coulomb interactions clearly enhance pi-plasmon frequency and osci llator strength as N increases. A multiwall carbon nanotube can exhibit L-d ecoupled pi plasmons. For the L = 0 pi plasmon, the multiwall nanotube beha ves like graphite layers, but not like a single-wall carbon nanotube bundle . The radius dependence is negligible for a multiwall nanotube, while it is strong for a single-wall nanotube bundle. Furthermore, the former exhibits stronger collective excitations, higher pi-plasmon frequency, and relative ly rapid increase of plasmon frequency with q. The calculated results are c ompared with experimental measurements.