We\lnic, W., Wuttig, M., Botti, S., & Reining, L. (2009). Local atomic order and optical properties in amorphous and laser-crystallized GeTe. C.R. Physique, 10, 514-527. https://doi.org/10.1016/j.crhy.2008.09.002
Lucia
Reining
Romaniello, P., Guyot, S., & Reining, L. (2009). The self-energy beyond GW: Local and nonlocal vertex corrections. The Journal of Chemical Physics, 131, 154111. https://doi.org/10.1063/1.3249965
Reining, L. (2009). Theoretical spectroscopy. Comptes Rendus Physique, Tome 10 N\textdegree6.
Papalazarou, E., Gatti, M., Marsi, M., Brouet, V., Iori, F., Reining, L., … Panaccione, G. (2009). Valence-band electronic structure of V[sub 2]O[sub 3]: Identification of V and O bands. Physical Review B (Condensed Matter and Materials Physics), 80, 155115. https://doi.org/10.1103/PhysRevB.80.155115
Reining, L. (2008). Ab initio calculations of electronic response - ingredients, results and challenges. Workshop Recent Developments in Electronic Structure, University of Illinois Urbana (USA). Presented at the. (Original work published)
Reining, L. (2008). Electronic response: theoretical approaches and link to experiment. MORE: Meeting on Optical Response in Extended Systems, Vienna (Austria). Presented at the. (Original work published)
Reining, L. (2008). ETSF: Présentation scientifique. Journée Entreprises, Paris. Presented at the. (Original work published)
Reining, L. (2008). Exchange and correlation effects in electronic spectra: contributions from ab initio calculations. Workshop on X-Ray Spectroscopies: Theory and Experiment, Lausanne (Switzerland). Presented at the. (Original work published)
Reining, L. (2008). Insight and prediction of material properties from ab initio calculations of electronic excitations. Second International Symposium on Structure-Property Relationships in Solid State Materials, Nantes (France). Presented at the. (Original work published)
Kramberger, C., Hambach, R., Giorgetti, C., Ruemmeli, M. H., Knupfer, M., Fink, J., … Pichler, T. (2008). Linear plasmon dispersion in single-wall carbon nanotubes and the collective excitation spectrum of graphene. Phys. Rev. Lett., 100. https://doi.org/10.1103/PhysRevLett.100.196803