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Optically Controlled Skyrmion Number Current

Optically Controlled Skyrmion Number Current

来源:Arxiv_logoArxiv
英文摘要

We propose a mechanism to control the motion of magnetic Skyrmions through the generation of a Skyrmion number current. This current is induced and tuned by an explicitly time-dependent Hamiltonian that includes a Zeeman term arising from the interaction between the spin system and circularly polarized light. To capture the effect, we apply a first-order perturbation method to the Landau-Lifshitz-Gilbert equation, using a breathing Skyrmion ansatz based on the Belavin-Polyakov profile. This approach reveals that the time-dependent deformation of the Skyrmion boundary produces an anisotropic breathing mode, which in turn generates a nonzero Skyrmion number current. The resulting dynamics in momentum space form a limit cycle, whose characteristics depend solely on the external magnetic field amplitude, the Heisenberg exchange coupling, and the Gilbert damping constant. Our formulation not only clarifies the topological origin of optically driven Skyrmion motion but also points to Skyrmion number currents as a low-dissipation alternative to electric currents for efficient Skyrmion control.

Emir Syahreza Fadhilla、M Shoufie Ukhtary、Ardian Nata Atmaja、Bobby Eka Gunara

物理学

Emir Syahreza Fadhilla,M Shoufie Ukhtary,Ardian Nata Atmaja,Bobby Eka Gunara.Optically Controlled Skyrmion Number Current[EB/OL].(2025-08-15)[2025-08-28].https://arxiv.org/abs/2508.11209.点此复制

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