Forschungsbereich Functional and Magnetic Materials

Organization Name (de) Name der Organisation (de)
E138-03 - Forschungsbereich Functional and Magnetic Materials
 
Code Kennzahl
E138-03
 
Type of Organization Organisationstyp
Research Division
Parent OrgUnit Übergeordnete Organisation
 
Active Aktiv
 


Results 141-160 of 2553 (Search time: 0.003 seconds).

PreviewAuthor(s)TitleTypeIssue Date
141Pustogow, Andrej ; Mackenzie, P. ; Brown, S.E. ; Dressel, Martin New Spin to Correlated Electrons: Solving Puzzles of Solid-State Science by Spectroscopic ProbesPräsentation Presentation2020
142Pustogow, Andrej ; Brown, S.E. ; Dressel, Martin Clearing the Gap: Magnetic Resonance Unmasks the Ground State of a Spin-Liquid CandidatePräsentation Presentation2020
143Pustogow, Andrej ; Mackenzie, P. ; Brown, S.E. Evidence for even parity unconventional superconductivity in Sr2RuO4Präsentation Presentation2020
144Löffler, Stefan ; Sack, Stefan ; Schachinger, Thomas Elastic propagation of fast electron vortices through amorphous materialsArtikel Article 4-Nov-2019
145Kneidinger, Friedrich ; Zeiringer, Isolde ; Sidorenko, Andrey ; Bauer, Ernst ; Michor, Herwig ; Rogl, Peter Franz ; Sereni, J.G. Physical properties of CeIrSi with trillium-lattice frustrated magnetismArtikel Article 31-Oct-2019
146Bauer, Ernst Bulk and thin film Heusler systems based on Fe2VAlPräsentation Presentation2019
147Bauer, Ernst High performance bulk and thin lm Heusler systems based on Fe2VAl: electronic and thermal transportPräsentation Presentation2019
148Bauer, Ernst Weak ferromagnetism and and thermoelectricity in Fe2VAl full-Heusler based systemsPräsentation Presentation2019
149Bauer, Ernst From bulk to film: largely enhanced thermoelectric performance in full Heusler alloysPräsentation Presentation2019
150Bauer, Ernst High Performance bulk and thin-film full Heusler alloysPräsentation Presentation2019
151Löffler, Stefan ; Schattschneider, Peter Quantum Experiments in the TEM: Realizing Unitary Operators using QuadrupolesKonferenzbeitrag Inproceedings2019
152Löffler, Stefan ; Schattschneider, Peter Unitary Two-State Quantum Operators Realized by Mode ConversionKonferenzbeitrag Inproceedings2019
153Schachinger, Thomas ; Löffler, Stefan ; Steiger-Thirsfeld, Andreas ; Stöger-Pollach, Michael ; Stöger-Pollach, Michael ; Tavabi, A.H. ; Venturi, F. ; Grillo, Vincenzo ; Horák, Michal ; Eisenmenger-Sittner, Christoph ; Dunin-Borkowski, Rafal ; Schattschneider, Peter Vortex filter EMCD: Experimental evidence for sub-nanometre resolutionKonferenzbeitrag Inproceedings2019
154Schachinger, Thomas ; Löffler, Stefan ; Steiger-Thirsfeld, Andreas ; Stöger-Pollach, Michael ; Tavabi, A.H. ; Venturi, F. ; Grillo, Vincenzo ; Horák, Michal ; Eisenmenger-Sittner, Christoph ; Dunin-Borkowski, Rafal ; Schattschneider, Peter Progress in vortex filter EMCD: Experimental evidence and sub-nanometre resolutionKonferenzbeitrag Inproceedings2019
155Löffler, Stefan ; Schattschneider, Peter Mode converters realize unitary operators on a two-state quantum systemKonferenzbeitrag Inproceedings2019
156Michor, Herwig ; Adroja, D.T. ; Scheidt, Ernst-Wilhelm ; Senyshyn, A. Neutron Powder Diffraction Study of the Magnetic Structures of CeNi9GeGa3 and CeNi9Ga4Bericht Report2019
157Michor, Herwig ; Adroja, D.T. Inelastic Neutron Scattering Study of the Crystalline Electric Field of CeNi9GeGa3 and CeNi9Ga4Bericht Report2019
158Hinterleitner, B. ; Knapp, I. ; Poneder, M. ; Shi, Yongpeng ; Müller, H. ; Eguchi, G. ; Eisenmenger-Sittner, C. ; Stöger-Pollach, M. ; Kakefuda, Y. ; Kawamoto, N. ; Guo, Q. ; Baba, T. ; Mori, T. ; Ullah, Sami ; Chen, Xing-Qiu ; Bauer, E. Thermoelectric performance of a metastable thin-film Heusler alloyArtikel Article 2019
159Rogl, Gerda ; Yubuta, K. ; Kerber, Michael ; Grytsiv, Andriy ; Zehetbauer, Michael ; Bauer, Ernst ; Rogl, Peter Franz Sustainable and simple processing technique for n-type skutterudites with high ZT and their analysisArtikel Article 2019
160Rogl, G. ; Yubuta, K. ; Romaka, V.V. ; Michor, H. ; Schafler, E. ; Grytsiv, A. ; Bauer, E. ; Rogl, P. High-ZT half-Heusler thermoelectrics, Ti0.5Zr0.5NiSn and Ti0.5Zr0.5NiSn0.98Sb0.02: Physical properties at low temperaturesArtikel Article 2019