物理
马格农
凝聚态物理
量子力学
联轴节(管道)
领域(数学)
量子电动力学
手性(物理)
铁磁性
费米子
作者
Anonymous,Peng Zhang,Jie Liu,Tianci Gong,Ying Su,K. J. Chang,Yan Peng
摘要
Nonrelativistic magnon chiral splitting in altermagnets has garnered significant recent attention. In this Letter, we demonstrate that nonlinear three-wave mixing-where magnons split or coalesce-extends this phenomenon into unprecedented relativistic regimes. Employing a bilayer antiferromagnet with Dzyaloshinskii-Moriya interactions, we identify three distinct classes of chiral splitting, each dictated by specific symmetries, such as C_{4}T, σ_{v}T, or their combination. This reveals a novel bosonic mechanism for symmetry-protected chiral splitting, capitalizing on the unique ability of magnons to violate particle-number conservation, a feature absent in low-energy fermionic systems. Our findings pave the way for engineering altermagnetic splitting, with potential applications in advanced magnonic devices and deeper insights into magnon dynamics in complex magnetic systems.
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