Higher-order Topological States in Chiral Split Magnons of Honeycomb Altermagnets
Higher-order Topological States in Chiral Split Magnons of Honeycomb Altermagnets
We theoretically explore higher-order topological magnons in collinear altermagnets, encompassing a dimensional hierarchy ranging from localized corner modes to propagating hinge excitations. By employing antiferromagnetic interlayer coupling in bosonic Bogoliubov-de Gennes (BdG) Hamiltonian, our work reveals anisotropic surface states and spatially distributed hinge modes within AA-type stacking configurations. We track the adiabatic evolution of Wannier centers to identify the bulk-polarization with second-order topological magnon insulator (SOTMI), where various magnon spectra demonstrate symmetry-protected band structure beyond conventional topology. Harnessing the stability and propagative properties of hinge modes, our study offers a potential platform for magnonic quantum information processing in altermagnetic systems that performs energy-efficient logic operation.
Xuan Guo、Meng-Han Zhang、Dao-Xin Yao
物理学
Xuan Guo,Meng-Han Zhang,Dao-Xin Yao.Higher-order Topological States in Chiral Split Magnons of Honeycomb Altermagnets[EB/OL].(2025-07-30)[2025-08-07].https://arxiv.org/abs/2507.22996.点此复制
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