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Anisotropic excitonic effects in the energy loss function of hexagonal boron nitride
ArticleAbstract: The anisotropy of the valence energy-loss function of hexagonal boron nitride (hBN) is shown to be lPalabras claves:Autores:Galambosi S., Hämäläinen K., Huotari S., Jorge Serrano, Marini A., Rubio A., Soininen J.A., Taniguchi T., Watanabe K., Wirtz L.Fuentes:scopusManifestation of charged and strained graphene layers in the Raman response of graphite intercalation compounds
ArticleAbstract: We present detailed multifrequency resonant Raman measurements of potassium graphite intercalation cPalabras claves:Charge transfer, Graphene, graphite intercalation compounds, Raman spectroscopy, strain determinationAutores:Julio C. Chacón-Torres, Pichler T., Wirtz L.Fuentes:googlescopusPhonon surface mapping of graphite: Disentangling quasi-degenerate phonon dispersions
ArticleAbstract: The two-dimensional mapping of the phonon dispersions around the K point of graphite by inelastic x-Palabras claves:Autores:Attaccalite C., Bosak A., Grüneis A., Jorge Serrano, Krisch M., Lazzeri M., Mauri F., Molodtsov S.L., Pichler T., Rubio A., Wirtz L.Fuentes:scopusVibrational properties of hexagonal boron nitride: Inelastic X-ray scattering and Ab Initio calculations
ArticleAbstract: The phonon dispersion relations of bulk hexagonal boron nitride have been determined from inelasticPalabras claves:Autores:Arenal R., Bosak A., Jorge Serrano, Kanda H., Krisch M., Rubio A., Taniguchi T., Watanabe K., Wirtz L.Fuentes:scopusRaman spectroscopy of graphite intercalation compounds: Charge transfer, strain, and electron-phonon coupling in graphene layers
ArticleAbstract: Graphite intercalation compounds (GICs) are an interesting and highly studied field since 1970's. ItPalabras claves:Charge transfer, Electron-phonon coupling, Graphene, graphite intercalation compounds, StrainAutores:Julio C. Chacón-Torres, Pichler T., Wirtz L.Fuentes:googlescopus