SPICE-Spin+X Seminar
Wednesday, 3 p.m. only via Zoom and SPICE YouTube Channel

Coordinator & contact:

Jairo Sinova, Karin Everschor-Sitte, Mathias Kläui, Martin Aeschlimann, Burkard Hillebrands, and Angela Wittmann

https://www.spice.uni-mainz.de/spice-spinx-online-seminars/

Date & Title
Feb. 2, 2022 via Zoom and SPICE YouTube Channel
Amalio Fernández-Pacheco (CSIC-University of Zaragoza): Three dimensional spintronics: “Faster, higher, stronger"
Jan. 26, 2022 via Zoom and SPICE YouTube Channel
Caroline A. Ross (Massachusetts Institute of Technology): Iron garnet thin films for spintronic and photonic devices
Jan. 19, 2022 via Zoom and SPICE YouTube Channel
Mikhail Katsnelson (Radboud University): Theory of magnetic interactions in real materials
Dec. 15, 2021 via Zoom and SPICE YouTube Channel
Bert Koopmans (Eindhoven University of Technology): Femto-magnetism meets spintronics: Towards integrated magneto-photonics
Dec. 8, 2021 via Zoom and SPICE YouTube Channel
Gisela Schütz (MPI for Intelligent Systems): X-ray magnetization movies: Spin dynamics in reality
Dec. 1, 2021 via Zoom and SPICE YouTube Channel
Stéphane Mangin (CNRS): Spin-transport Mediated Single-shot All-optical Magnetization Switching of Metallic Films
Nov. 24, 2021 via Zoom and SPICE YouTube Channel
Hariom Jani (NUS): Antiferromagnetic Skyrmionics: generating and controlling topological textures
Nov. 17, 2021 via Zoom and SPICE YouTube Channel
Hidekazu Kurebayashi (University College London): Magnetism and spin dynamics control by carrier doping in van der Waals magnet Cr2Ge2Te6
Nov. 10, 2021 via Zoom and SPICE YouTube Channel
Tomas Jungwirth (Institute of Physics of the Science Academy of the Czech Republic): Altermagnetism: spin-momentum locked phase protected by non-relativistic symmetries
Nov. 3, 2021 via Zoom and SPICE YouTube Channel
Peter Oppeneer (Uppsala University): Analytic and ab initio theory of magnetization dynamics
Oct. 27, 2021 via Zoom and SPICE YouTube Channel
Kirsten von Bergmann (Hamburg University): Nano-scale skyrmions and atomic-scale spin textures studied with STM
Oct. 20, 2021 via Zoom and SPICE YouTube Channel
Achim Rosch (University of Cologne): Archimedean screw and time quasi-crystals in driven chiral magnets
Oct. 13, 2021 via Zoom and SPICE YouTube Channel
Markus Garst (KIT): Magnetic skyrmion strings: how they bend, twist and vibrate
Sept. 29, 2021 via Zoom and SPICE YouTube Channel
Stefano Bonetti (Stockholm University): Inertial spin dynamics in ferromagnets
Sept. 22, 2021 via Zoom and SPICE YouTube Channel
Jack Nathaniel Carter-Gartside (Imperial College London): Reconfigurable Training, Vortex Writing and Noise-Tolerant Reservoir Computation via Spin-Wave Fingerprinting in an Artificial Spin-Vortex Ice
Sept. 15, 2021 via Zoom and SPICE YouTube Channel
Katja Nowack (Cornell University): Local magnetic measurements of quantum materials
Sept. 1, 2021 via Zoom and SPICE YouTube Channel
Benedetta Flebus (Boston College): Magnetic topological phases in dissipative systems
July 28, 2021 via Zoom and SPICE YouTube Channel
Alexander Mook (University of Basel): Interacting and higher-order topological spin excitations
July 21, 2021 via Zoom and SPICE YouTube Channel
Shunsuke Fukami (Tohoku University): Electrical manipulation of non-collinear antiferromagnet
July 14, 2021 via Zoom and SPICE YouTube Channel
Christian Pfleiderer (TU Munich): Topological protectorates of Fermi surfaces
July 7, 2021 via Zoom and SPICE YouTube Channel
Philipp Pirro (TUK): Neuromorphic magnon-spintronic networks
June 30, 2021 via Zoom and SPICE YouTube Channel
Katharina Franke (FU Berlin): Building and investigating magnetic adatom chains on superconductors atom by atom
June 23, 2021 via Zoom and SPICE YouTube Channel
Vincent Baltz (SPINTEC): Spin And Charge Transport in Antiferromagnets
June 16, 2021 via Zoom and SPICE YouTube Channel
Andrew Kent (New York University): Electrical Generation of Spin Currents
June 9, 2021 via Zoom and SPICE YouTube Channel
Sangeeta Sharma (Max-Born-Institute): Ultrafast coupled charge, spin and nuclear dynamics: ab-initio description