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Altermagnetic spin tex- tures: Emergent electrodynamics, quantum geometry, and probes

3 Pith papers cite this work. Polarity classification is still indexing.

3 Pith papers citing it

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2026 3

representative citing papers

Anisotropic vacancy-induced magnetization textures in altermagnets

cond-mat.str-el · 2026-07-08 · accept · novelty 7.0

A vacancy generically induces anisotropic magnetization textures in altermagnets whose multipolar form factor encodes the altermagnetic order, visible in classical systems under transverse field and in quantum systems at zero field.

Noise spectroscopy of insulating and itinerant altermagnets

cond-mat.mes-hall · 2026-04-25 · unverdicted · novelty 6.0

Noise spectroscopy of charge fluctuations in itinerant altermagnets yields symmetry-protected signatures absent in antiferromagnets, enabling experimental identification and access to d-wave or g-wave orbital character via bulk, strain, and domain-wall geometries.

Orbital-driven emergent transport in altermagnets

cond-mat.mes-hall · 2026-04-07 · unverdicted · novelty 6.0

Treating orbital degrees of freedom as dynamical variables in altermagnets generates emergent electric fields tunable by lattice anisotropy, driving orbital and magnetic multipole currents even in simplified textures with dynamic lattice distortion.

citing papers explorer

Showing 3 of 3 citing papers.

  • Anisotropic vacancy-induced magnetization textures in altermagnets cond-mat.str-el · 2026-07-08 · accept · none · ref 44

    A vacancy generically induces anisotropic magnetization textures in altermagnets whose multipolar form factor encodes the altermagnetic order, visible in classical systems under transverse field and in quantum systems at zero field.

  • Noise spectroscopy of insulating and itinerant altermagnets cond-mat.mes-hall · 2026-04-25 · unverdicted · none · ref 73

    Noise spectroscopy of charge fluctuations in itinerant altermagnets yields symmetry-protected signatures absent in antiferromagnets, enabling experimental identification and access to d-wave or g-wave orbital character via bulk, strain, and domain-wall geometries.

  • Orbital-driven emergent transport in altermagnets cond-mat.mes-hall · 2026-04-07 · unverdicted · none · ref 44

    Treating orbital degrees of freedom as dynamical variables in altermagnets generates emergent electric fields tunable by lattice anisotropy, driving orbital and magnetic multipole currents even in simplified textures with dynamic lattice distortion.