Plasmon damping below the Landau regime: the role of defects in epitaxial graphene

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Langer, T.; Baringhaus, J.; Pfnuer, H.; Schumacher, H. W.; Tegenkamp, C.: Plasmon damping below the Landau regime: the role of defects in epitaxial graphene. In: New Journal of Physics 12 (2010), 33017. DOI: https://doi.org/10.1088/1367-2630/12/3/033017

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Sum total of downloads: 222




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Abstract: 
The sheet plasmon in epitaxially grown graphene layers on SiC(0001) and the influence of surface roughness have been investigated in detail by means of low-energy electron diffraction (LEED) and electron energy loss spectroscopy (EELS). We show that the existence of steps or grain boundaries in this epitaxial system is a source of strong damping, while the dispersion is rather insensitive to defects. To the first order, the lifetime of the plasmons was found to be proportional to the average terrace length and to the plasmon wavelength. A possible reason for this surprisingly efficient plasmon damping may be the close coincidence of phase (and group) velocities of the plasmons ( almost linear dispersion) with the Fermi velocity of the electrons. Therefore, uncorrelated defects like steps only have to act as a momentum source to effectively couple plasmons to the electron-hole continuum.
License of this version: CC BY-NC-SA 3.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2010
Appears in Collections:Fakultät für Mathematik und Physik

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pos. country downloads
total perc.
1 image of flag of Germany Germany 144 64.86%
2 image of flag of United States United States 29 13.06%
3 image of flag of China China 14 6.31%
4 image of flag of Russian Federation Russian Federation 9 4.05%
5 image of flag of Canada Canada 4 1.80%
6 image of flag of Netherlands Netherlands 3 1.35%
7 image of flag of Japan Japan 3 1.35%
8 image of flag of Hungary Hungary 2 0.90%
9 image of flag of France France 2 0.90%
10 image of flag of Belarus Belarus 2 0.90%
    other countries 10 4.50%

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