Topological Magnons for Quantum Information
ORAL · Invited
Abstract
We uncover that antiskyrmion crystals provide an experimentally accessible platform to realize a magnonic quadrupole topological insulator [2-6], whose hallmark signatures are robust magnonic corner states. Furthermore, we show that tuning an applied magnetic field can trigger the self-assembly of antiskyrmions carrying a fractional topological charge along the sample edges. Crucially, these fractional antiskyrmions restore the symmetries needed to enforce the emergence of the magnonic corner states. Using the machinery of nested Wilson loops, adapted to magnonic systems supported by noncollinear magnetic textures, we demonstrate the quantization of the bulk quadrupole moment, edge dipole moments, and corner charges.
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Publication: [1] J. Zou, S. Bosco, B. Pal, S. S. P. Parkin, J. Klinovaja, and D. Loss, Phys. Rev. Research 5, 033166 (2023).
[2] K. Nakata, J. Klinovaja, and D. Loss, Phys. Rev. B 95, 125429 (2017).
[3] K. Nakata, S. K. Kim, J. Klinovaja, and D. Loss, Phys. Rev. B 96, 224414 (2017).
[4] S. A. Díaz, J. Klinovaja, and D. Loss, Phys. Rev. Lett. 122, 187203 (2019).
[5] S. A. Díaz, T. Hirosawa, J. Klinovaja, and D. Loss, Phys. Rev. Res. 2, 013231 (2020).
[6] T. Hirosawa, S. A. Diaz, J. Klinovaja, D. Loss, Phys. Rev. Lett. 125 (20), 207204 (2020).
[7] A. Mook, S. A. Díaz, J. Klinovaja, D. Loss, Phys. Rev. B 104 (2), 024406 (2021).
[8] A. Mook, K. Plekhanov, J. Klinovaja, D. Loss, Phys. Rev. X 11 (2), 021061 (2021).
Presenters
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Jelena Klinovaja
University of Basel
Authors
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Jelena Klinovaja
University of Basel
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Daniel Loss
University of Basel
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Stefano Bosco
University of Basel
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Stuart S Parkin
Max Planck Institute of Microstructure Physics
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Ji Zou
University of Basel, Univ of California - Los Angeles
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Banabir Pal
Max Planck Institute of Microstructure Physics
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TOMOKI HIROSAWA
Aoyama Gakuin University
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Sebastian A Diaz
University of Duisburg-Essen