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Skyrmion and vortex crystals in the Hubbard model

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Phys. Rev. B_106(14)_L140406.pdf1.64 MBPDFView/Open
Please use this identifier to cite or link to this item:http://hdl.handle.net/2115/87417

Title: Skyrmion and vortex crystals in the Hubbard model
Authors: Kobayashi, Kaito Browse this author
Hayami, Satoru Browse this author
Issue Date: 20-Oct-2022
Publisher: American Physical Society (APS)
Journal Title: Physical Review B
Volume: 106
Issue: 14
Start Page: L140406
Publisher DOI: 10.1103/PhysRevB.106.L140406
Abstract: A mutual interplay between the charge and spin degrees of freedom in itinerant magnets leads to a plethora of topological spin textures, such as magnetic skyrmion and vortex crystals, in both centrosymmetric and noncentrosymmetric hosts. Meanwhile, their stabilization has been extensively studied in a system including classical localized spins. We here study a realization of the skyrmion crystal in a centrosymmetric triangularlattice Hubbard model, where the itinerant nature of electrons plays a more significant role. By performing self-consistent mean-field calculations, we find that two types of skyrmion crystals with spatially nonuniform charge modulations appear in the ground state at zero magnetic field. Moreover, we obtain another noncoplanar vortex crystal phase without a net scalar chirality in the vicinity of the skyrmion crystal phase. We show that the latter vortex crystal exhibits a topological phase transition to a different skyrmion phase in an applied magnetic field. Our results provide a possibility of skyrmion and vortex crystals in itinerant magnets without localized moments.
Rights: ©2022 American Physical Society
Type: article
URI: http://hdl.handle.net/2115/87417
Appears in Collections:理学院・理学研究院 (Graduate School of Science / Faculty of Science) > 雑誌発表論文等 (Peer-reviewed Journal Articles, etc)

Submitter: 速水 賢

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