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15:00 |
KFM 15.1 |
Real-time imaging of nonequilibrium domain evolution into a multiferroic phase — •Jan Gerrit Horstmann, Yannik Zemp, Ehsan Hassanpour Yesaghi, Thomas Lottermoser, Mads C. Weber, and Manfred Fiebig
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15:15 |
KFM 15.2 |
Asymmetry of the magnetic-field-driven phase transition in h-ErMnO3 — •Lea Forster, Ipek Efe, Morgan Trassin, Manfred Fiebig, Thomas Lottermoser, and Mads C. Weber
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15:30 |
KFM 15.3 |
Magnetoelectric Effects in 2D Magnets: A Multiscale Approach Applied to Topological Solitons in CrI3 — •Alexander Edström, Paolo Barone, Silvia Picozzi, and Massimiliano Stengel
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15:45 |
KFM 15.4 |
Electric field-driven dynamics of meron domain walls in spin spiral multiferroics — •Luca Maranzana and Sergey Artyukhin
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16:00 |
KFM 15.5 |
Antimagnetoelectricy in multiferroic BiCoO3 from first-principles — •Bogdan Guster, Maxime Braun, Houria Kabbour, and Eric Bousquet
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16:15 |
KFM 15.6 |
Electric field induced reversal of spin alignment in graphone/hexagonal boron nitride on Ni(111) — Jaime Oliveira da Silva and •Fernando Nogueira
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16:30 |
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15 min. break
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16:45 |
KFM 15.7 |
Thermal conductivity in multiferroic CaBaCo4O7 — •Reza Firouzmandi, Matthias Gillig, Yusuke Tokunaga, Yasujiro Taguchi, Yoshinori Tokura, Christian Hess, Vilmos Kocsis, and Bernd Büchner
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17:00 |
KFM 15.8 |
Non-trivial Spin Structures And Multiferroic Properties Of The DMI-Compound Ba2CuGe2O7 — •Korbinian Fellner, Sebastian Mühlbauer, Peter Wild, Michal Dembski-Villalta, Tommy Kotte, Markus Garst, Alexandra Turrini, and Bertrand Roessli
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17:15 |
KFM 15.9 |
Atomic-scale visualization of multiferroicity in monolayer NiI2 — Mohammad Amini, •Adolfo Fumega, Hector Gonzalez-Herrero, Viliam Vano, Shawulienu Kezilebieke, Jose Lado, and Peter Liljeroth
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17:30 |
KFM 15.10 |
Ptychographic imaging of multiferroic domains in freestanding BiFeO3 films — •Tim A. Butcher, Nicholas W. Phillips, Chia-Chun Wei, Carlos A. F. Vaz, Armin Kleibert, Simone Finizio, Jan-Chi Yang, Shih-Wen Huang, and Jörg Raabe
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17:45 |
KFM 15.11 |
Imaging the antiferromagnetic domains in LiCoPO4 via the optical magnetoelectric effect — •Boglárka Tóth, Vilmos Kocsis, and Sándor Bordács
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