Photoinduced Topological Phase Transitions in Topological Magnon Insulators
arXiv:1801.04932 · doi:10.1038/s41598-018-22779-8
Abstract
Topological magnon insulators are the bosonic analogs of electronic topological insulators. They are manifested in magnetic materials with topologically nontrivial magnon bands as realized experimentally in a quasi-two-dimensional (quasi-2D) kagome ferromagnet Cu(1-3, bdc), and they also possess protected magnon edge modes. These topological magnetic materials can transport heat as well as spin currents, hence they can be useful for spintronic applications. Moreover, as magnons are charge-neutral spin- bosonic quasiparticles with a magnetic dipole moment, topological magnon materials can also interact with electromagnetic fields through the Aharonov-Casher effect. In this report, we study photoinduced topological phase transitions in intrinsic topological magnon insulators in the kagomé ferromagnets. Using magnonic Floquet-Bloch theory, we show that by varying the light intensity, periodically driven intrinsic topological magnetic materials can be manipulated into different topological phases with different sign of the Berry curvatures and the thermal Hall conductivity. We further show that, under certain conditions, periodically driven gapped topological magnon insulators can also be tuned to synthetic gapless topological magnon semimetals with Dirac-Weyl magnon cones. We envision that this work will pave the way for interesting new potential practical applications in topological magnetic materials
10 pages, 4 figures. Revised version implementing corrections from Corrigendum
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- Thermal Hall effect and topological edge states in a square lattice antiferromagnet
- Topological Phase Transitions of Dirac Magnons in Honeycomb Ferromagnets
- Orbital Floquet Engineering of Exchange Interactions in Magnetic Materials
- Laser control of magnonic topological phases in antiferromagnets
- Magnonic Floquet Quantum Spin Hall Insulator in Bilayer Collinear Antiferromagnets
- Floquet Weyl Magnons
- Photoinduced Floquet topological magnons in a ferromagnetic checkerboard lattice
- Magnonic Floquet Hofstadter Butterfly
- Emergence of photo-induced multiple topological phases on square octagon lattice
- Disorder-induced topology in quench dynamics
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- Reflectionless pseudospin-1 Dirac systems via Darboux transformation and flat band solutions
- Photo-induced Floquet Weyl magnons in noncollinear antiferromagnets
- Tunable multi-magnon Floquet topological edge states
- Classification of magnon thermal Hall systems based on U(1) to non-Abelian gauge fields
- Ferroelectricity in a magnon Bose-Einstein condensate: Nonreciprocal superfluidity, exceptional points, and Majorana bosons