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arxiv: 2507.18408 · v2 · pith:IK3FQC6Pnew · submitted 2025-07-24 · ❄️ cond-mat.mes-hall

Altermagnetism in quasicrystals

classification ❄️ cond-mat.mes-hall
keywords quasicrystalssymmetriesaltermagneticperiodicityphasesaltermagnetismantiferromagnetscharacteristic
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Altermagnets are a recently discovered class of magnetic materials that combine a collinear, zero-magnetization spin structure, characteristic of antiferromagnets, with spin-split electronic bands, a hallmark of ferromagnets. This unique behavior arises from the breaking of combined time-reversal and spatial symmetries (such as inversion or lattice translation), which are preserved in conventional antiferromagnets. To date, research has mainly focused on altermagnetic phases in periodic crystals, where the order is linked to rotational symmetries compatible with translational periodicity. In this Letter, we demonstrate that quasicrystals, which possess rotational symmetries incompatible with periodicity, can host exotic altermagnetic orders. Using symmetry analysis and self-consistent mean-field theory, we predict stable $g$-wave and $i$-wave altermagnetism in octagonal and dodecagonal quasicrystals, respectively. These phases are characterized by global $C_8 T$ and $C_{12} T$ symmetries and exhibit anisotropic spin-splittings in their spectral functions and spin conductance, with characteristic eight- and twelve-fold nodal structures that establish a theoretical framework for identifying these phases in future experiments. Our findings establish quasicrystals as a versatile platform for realizing unconventional altermagnetic orders beyond the constraints of periodicity.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Unconventional Altermagnetism in Quasicrystals: A Hyperspatial Projective Construction

    cond-mat.mes-hall 2025-08 unverdicted novelty 8.0

    Hyperspatial projections of decorated Ammann-Beenker and Penrose lattices host interaction-induced Néel order that realizes g-wave and h-wave altermagnetism compatible with quasicrystalline symmetries.

  2. Anomalous thermoelectric and thermal Hall effects in irradiated altermagnets

    cond-mat.mes-hall 2026-02 unverdicted novelty 7.0

    Elliptically polarized light irradiation converts d-wave altermagnets into Chern insulators, yielding quantized thermal Hall conductivity and gap-edge peaks in the thermoelectric Hall response.

  3. Layer Hall effect induced by altermagnetism

    cond-mat.mes-hall 2026-01 unverdicted novelty 7.0

    D-wave altermagnets on Bi2Se3 surfaces induce a layer Hall effect with zero net Hall conductance for antiparallel Néel vectors and a quantized Chern state for parallel vectors.