Topological Defects in Triple-Q Magnetic Orders: A Fixed-Lattice Homotopy Classification
Jin-Tao Jin, Yi Zhou
Abstract
Multiple-Q magnetic orders combine continuous spin rotations with discrete crystalline sectors associated with translations and point-group transformations, producing a richer defect structure than conventional single-Q magnets. We classify the bulk defects of all seven stable phases for N=2 and 3 in the M-point triple-Q Ginzburg--Landau theory with ()×(N) symmetry, where is the translation-generated Klein four-group. The atomic lattice is treated as a prescribed background, with lattice dislocations and disclinations excluded and the three Fourier fields retaining their physical M-point labels. The parent-group transformations continuously connected to the identity form G0=\e\×(N). For a reference-state stabilizer H, the connected component containing the reference state is G0/(H G0), not the quotient obtained by projecting H onto spin space. This distinction gives the orthogonal triple-Q phase the full manifold (3), with chirality walls and Abelian 2 frame vortices rather than non-Abelian binary-polyhedral vortices. Every connected component of the (2) phases supports an integer 2π vortex, whereas fractional windings close only when attached to a discrete-domain wall and are linearly confined at nonzero wall tension. Translation symmetry further forbids cross-gradient bilinears, reducing the quadratic elastic sector to an isotropic and an M-point-locked anisotropic stiffness. The classification separates free internal defects, crystalline domain walls, and wall-bound composites in triple-Q magnets.
Create a lesson
Related papers
Exact and fast series expansions for quantum models with long-range interactions
Antonia Duft, Patrick Adelhardt, Jan Alexander Koziol et al.
Electronic correlations shape the low-energy optical response of the kagome antiferromagnets Mn3Sn and Mn3Ge
R. Mathew Roy, Bo Tai, Maxim Wenzel et al.
Orbital-Induced Peierls Transitions: How Orbitals Orchestrate Lattice Instability
T. Mizokawa, S. V. Streltsov
Optical investigation of the electronic structure of a ferromagnetic Weyl semimetal CeAlSi
Shin-ichi Kimura, Yue Pan, Hiroshi Watanabe et al.
Assessing the Reliability of Anomalous Hall Conductivity Extraction in GdAlSi
Anil Kumar, Debapratim Pal, Sudhan Koirala et al.
What does "instant thermalization" in large-q SYK models mean?
Alexander Osterkorn, Jan C. Louw