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Plasmon features in electron energy loss spectra from carbon materialsCALLIARI, L; FANCHENKO, S; FILIPPI, M et al.Carbon (New York, NY). 2007, Vol 45, Num 7, pp 1410-1418, issn 0008-6223, 9 p.Article

Sp3/sp2 characterization of carbon materials from first-principles calculations : X-ray photoelectron versus high energy electron energy-loss spectroscopy techniquesTITANTAH, J. T; LAMOEN, D.Carbon (New York, NY). 2005, Vol 43, Num 6, pp 1311-1316, issn 0008-6223, 6 p.Article

Optical properties of SiO2 determined by reflection electron energy loss spectroscopyBEKHTI, W; GHAMNIA, M.Catalysis today. 2004, Vol 89, Num 3, pp 303-306, issn 0920-5861, 4 p.Conference Paper

Surface phonon dispersion on Cu(111) = Dispersion de phonons de surface sur Cu (111)MOHAMED, M. H; KESMODEL, L. L; HALL, B. M et al.Physical review. B, Condensed matter. 1988, Vol 37, Num 5, pp 2763-2765, issn 0163-1829Article

Plasmon spectra of Ti and TiH2 = Spectres de plasmons de Ti et TiH2ALEXANDROPOULOS, N. G; BAMBAKIDIS, G; SPARROW, T et al.Journal of physics. F. Metal physics. 1986, Vol 16, Num 10, pp L245-L247, issn 0305-4608Article

Electron energy loss for isolated cylindersPITARKE, J. M; RIVACOBA, A.Surface science. 1997, Vol 377-79, pp 294-300, issn 0039-6028Conference Paper

Surface phonon dispersion on Al(100) = Dispersion des phonons de surface sur Al(100)MOHAMED, M. H; KESMODEL, L. L.Physical review. B, Condensed matter. 1988, Vol 37, Num 11, pp 6519-6520, issn 0163-1829Article

Evidence of confinement of the πplasmon in periodically rippled graphene on Ru(0001)POLITANO, Antonio; CAMPI, Davide; FORMOSO, Vincenzo et al.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 27, pp 11356-11361, issn 1463-9076, 6 p.Article

Incorporation of the electron energy-loss straggling into the Fermi-Eyges equationJIANG, S. B; LUO, Z.-M; AYYANGAR, K. M et al.Radiation physics and chemistry (1993). 1998, Vol 53, Num 5, pp 477-482, issn 0969-806XArticle

Electron energy-loss distributions in solid, dry DNALAVERNE, J. A; PIMBLOTT, S. M.Radiation research. 1995, Vol 141, Num 2, pp 208-215, issn 0033-7587Article

Retarded dielectric theory of electron energy loss in multilayers and superlatticesCHEN, M; BOLTON, J. P. R.Superlattices and microstructures. 1992, Vol 12, Num 4, pp 531-534, issn 0749-6036Article

2D Self-Organization of Core/Shell Cohcp/Co NanocrystalsLISIECKI, I; WALLS, M; PARKER, D et al.Langmuir. 2008, Vol 24, Num 8, pp 4295-4299, issn 0743-7463, 5 p.Article

A new model of dependence of secondary electron emission yield on primary electron energy for application to polymersCAZAUX, J.Journal of physics. D, Applied physics (Print). 2005, Vol 38, Num 14, pp 2433-2441, issn 0022-3727, 9 p.Article

Dispersion of the valence electron energy loss in thin amorphous carbon films deposited by ion assisted evaporation of graphiteFALKE, U; WEBER, A.-K; ULLMANN, J et al.Microscopy microanalysis microstructures (Les Ulis). 1995, Vol 6, Num 1, pp 113-120, issn 1154-2799Conference Paper

Temperature dependence of the exchange splitting in Ni studied by spin-polarized electron-energy-loss spectroscopy = Dépendance en température de la décomposition d'échange dans Ni étudiée par spectroscopie de perte d'énergie des électrons à polarisation de spinKIRSCHNER, J; LANGENBACH, E.Solid state communications. 1988, Vol 66, Num 7, pp 761-765, issn 0038-1098Article

Quantitative, nanoscale mapping of sp2 percentage and crystal orientation in carbon multilayersBOSMAN, M; KEAST, V. J; WATANABE, M et al.Carbon (New York, NY). 2009, Vol 47, Num 1, pp 94-101, issn 0008-6223, 8 p.Article

The spectrum of surface-mode contributions to the excitation probability for an electron beam interacting with sharp-edged dielectric wedgesNERSISYAN, H. B; HOVHANNISYAN, A. V.Journal of physics. Condensed matter (Print). 1999, Vol 11, Num 39, pp 7423-7436, issn 0953-8984Article

Oscillator-strength parameterization of inner-shell cross sectionsEGERTON, R. F.Ultramicroscopy. 1993, Vol 50, Num 1, pp 13-28, issn 0304-3991Article

4p and 3p core excitations in zirconium = Excitations de cœur 4p et 3p dans le zirconiumVANINI, F; ERBUDAK, M; AEBI, P et al.Solid state communications. 1988, Vol 66, Num 6, pp 589-591, issn 0038-1098Article

Phonon softening and the hydrogen-induced Ni(110) 1×2 reconstruction = Mode mou de phonon et la reconstruction Ni(110) 1×2 induite par l'hydrogèneLEHWALD, S; VOIGTLÄNDER, B; IBACH, H et al.Physical review. B, Condensed matter. 1987, Vol 36, Num 4, pp 2446-2449, issn 0163-1829Article

Electronic stopping power of amorphous carbon for H+2 and H+3 beamsGARCIA-MOLINA, R; DENTON, C. D; PEREZ-PEREZ, F. J et al.Physica status solidi. B. Basic research. 2000, Vol 219, Num 1, pp 23-30, issn 0370-1972Article

Self-energy in surface electron spectroscopy : I. Plasmons on a free-electron-material surfaceDING, Z.-J.Journal of physics. Condensed matter (Print). 1998, Vol 10, Num 8, pp 1733-1751, issn 0953-8984Article

Accurate calculation of collision integrals using adaptive methodsGAU, Y.-T; QUO, S.-F.Japanese journal of applied physics. 1997, Vol 36, Num 2, pp 943-947, issn 0021-4922, 1Article

Spin-polarized electron-energy-loss spectroscopy on Ni = Spectroscopie de perte d'énergie des électrons à polarisation de spin sur NiABRAHAM, D. L; HOPSTER, H.Physical review letters. 1989, Vol 62, Num 10, pp 1157-1160, issn 0031-9007Article

Momentum dependence of the Stoner excitation spectrum of iron using spin-polarized electron-energy-loos spectroscopy = Variation en fonction du moment du spectre d'excitation de Stoner du fer en utilisant la spectroscopie de perte d'énergie des électrons à polarisation de spinVENUS, D; KIRSCHNER, J.Physical review. B, Condensed matter. 1988, Vol 37, Num 4, pp 2199-2211, issn 0163-1829Article

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