Full name Familienname, Vorname
Draxl, Claudia
 

Results 1-7 of 7 (Search time: 0.002 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Löffler, Stefan ; Bugnet, Matthieu ; Pardini, Lorenzo ; Biddau, Giulio ; Gauquelin, Nicolas ; Lazar, Sorin ; Assmann, Elias ; Held, Karsten ; Draxl, Claudia ; Kaiser, Ute ; Botton, Gianluigi A. ; Schattschneider, Peter Real-Space Mapping of Electronic OrbitalsPräsentation Presentation2019
2Pardini, Lorenzo ; Löffler, Stefan ; Biddau, Giulio ; Hambach, Ralf ; Kaiser, Ute ; Draxl, Claudia ; Schattschneider, Peter Mapping Atomic Orbitals with the Transmission Electron Microscope: Images of Defective Graphene Predicted from First-Principles TheoryArtikel Article 2016
3Pardini, Lorenzo ; Löffler, Stefan ; Biddau, Giulio ; Hambach, Ralf ; Kaiser, Ute ; Draxl, Claudia ; Schattschneider, Peter Mapping atomic orbitals in the transmission electronic microscope: seeing defects in graphenePräsentation Presentation2015
4Löffler, Stefan ; Bugnet, Matthieu ; Gauquelin, Nicolas ; Hambach, Ralf ; Lazar, Sorin ; Pardini, Lorenzo ; Draxl, Claudia ; Kaiser, Ute ; Botton, Gianluigi A. ; Schattschneider, Peter Can orbitals be mapped in the TEM?Konferenzbeitrag Inproceedings2014
5Löffler, Stefan ; Pardini, Lorenzo ; Hambach, Ralf ; Kaiser, Ute ; Schattschneider, Peter ; Draxl, Claudia Mapping electronic states in GrapheneKonferenzbeitrag Inproceedings2014
6Löffler, Stefan ; Motsch, Viktoria ; Hetaba, Walid ; Hambach, Ralf ; Biddau, Giulio ; Pardini, Lorenzo ; Draxl, Claudia ; Kaiser, Ute ; Schattschneider, Peter Towards mapping atomic orbitals in the TEMPräsentation Presentation2013
7Löffler, Stefan ; Motsch, Viktoria ; Hetaba, Walid ; Hambach, Ralf ; Biddau, Giulio ; Pardini, Lorenzo ; Draxl, Claudia ; Kaiser, Ute ; Schattschneider, Peter Towards mapping atomic orbitals in the TEMKonferenzbeitrag Inproceedings2013

Results 1-1 of 1 (Search time: 0.002 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Koller David - 2013 - Excited states studied with density functional theory...pdf.jpgKoller, David Excited states studied with density functional theory using local and non-local potentialsThesis Hochschulschrift 2013