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October 22, 2025Nano Letters7 citations

Spin-Selective Second-Order Topological Insulators Enabling Cornertronics in Two-Dimensional Altermagnets

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NYNingjing YangZHZhigao HuangJZJian‐Min Zhang

Key Points

  • The creation of spin-resolved corner modes leads to the emergence of second-order topological insulator states in 2D altermagnets.
  • A critical strain results in a phase transition to a quantum anomalous Hall insulator with quantized conductance.
  • First-principles calculations indicate CrO and Cr2Se2O as promising candidates for realizing corner-polarized second-order topological insulators.
  • Findings suggest new applications in altermagnetism and cornertronics, linking topological structures with spintronics.

Abstract

Recent progress in spintronics within the paradigm of altermagnets (AMs) opens new avenues for next-generation electronic device design. Here, we establish a spin-corner locking mechanism that generates second-order topological states in two-dimensional (2D) altermagnetic systems through effective model analysis. Remarkably, the breaking of Mxy symmetry under uniaxial strain creates spin-resolved corner modes, driving the system into a corner-polarized second-order topological insulator (CPSOTI). Beyond critical strain, a topological phase transition to a quantum anomalous Hall insulator occurs with quantized conductance. Through first-principles calculations, we identify two experimentally viable candidates for 2D intrinsic AM CrO and Cr2Se2O, which host robust CPSOTI. Moreover, we construct the topological phase diagram of CrO and predict the existence of an altermagnetic Weyl semimetal phase. Our findings open technological avenues in altermagnetism and higher order topology while providing opportunities for coupling topological spintronics with cornertronics.

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Cite This Study

Yang et al. (2025) studied this question.

synapsesocial.com/papers/68f83307d24b29c969481396https://doi.org/10.1021/acs.nanolett.5c03191
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